<tools xmlns="biotoolsSchema" xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance" xsi:schemaLocation="biotoolsSchema file:///E:/repos/GitHub/biotoolsShim/genericxml2xml/versions/biotools-3.3.0/biotools_3.3.0.xsd"><tool><name>DiffLogo</name><description>DiffLogo is an easy-to-use tool to visualize motif differences.</description><homepage>https://bioconductor.org/packages/DiffLogo</homepage><biotoolsID>difflogo</biotoolsID><biotoolsCURIE>biotools:difflogo</biotoolsCURIE><version>2.36.0</version><toolType>Library</toolType><toolType>Command-line tool</toolType><topic><uri>http://edamontology.org/topic_0622</uri><term>Genomics</term></topic><operatingSystem>Mac</operatingSystem><operatingSystem>Linux</operatingSystem><operatingSystem>Windows</operatingSystem><language>R</language><license>GPL-2.0-or-later</license><collectionID>BioConductor</collectionID><function><operation><uri>http://edamontology.org/operation_0362</uri><term>Genome 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annotation data. This package provides a collection of functions for retrieving, processing, and re-packaging UniProt web services. 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All three algorithms are integrated in the package, therefore, they do not depend on any external software tools and are available for all major platforms. 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Exports selected sequences and regions from the alignment Images are exported in PNG Export sequences in FASTA format Export features in GFF
NOTE: Actually, all these output types of data should instead be under separate "constant" operations, while the visualisation should be an unary operation, perhaps without an output.</note></function><function><operation><uri>http://edamontology.org/operation_0492</uri><term>Multiple sequence alignment</term></operation><input><data><uri>http://edamontology.org/data_2977</uri><term>Nucleic acid sequence</term></data><format><uri>http://edamontology.org/format_1929</uri><term>FASTA</term></format><format><uri>http://edamontology.org/format_1935</uri><term>GCG</term></format><format><uri>http://edamontology.org/format_1997</uri><term>PHYLIP format</term></format><format><uri>http://edamontology.org/format_1927</uri><term>EMBL format</term></format><format><uri>http://edamontology.org/format_1936</uri><term>GenBank format</term></format><format><uri>http://edamontology.org/format_1948</uri><term>nbrf/pir</term></format></input><input><data><uri>http://edamontology.org/data_2976</uri><term>Protein sequence</term></data><format><uri>http://edamontology.org/format_1929</uri><term>FASTA</term></format><format><uri>http://edamontology.org/format_1935</uri><term>GCG</term></format><format><uri>http://edamontology.org/format_1997</uri><term>PHYLIP format</term></format><format><uri>http://edamontology.org/format_1927</uri><term>EMBL format</term></format><format><uri>http://edamontology.org/format_1936</uri><term>GenBank format</term></format><format><uri>http://edamontology.org/format_1948</uri><term>nbrf/pir</term></format></input><output><data><uri>http://edamontology.org/data_0867</uri><term>Sequence alignment report</term></data><format><uri>http://edamontology.org/format_1982</uri><term>ClustalW format</term></format><format><uri>http://edamontology.org/format_1997</uri><term>PHYLIP format</term></format><format><uri>http://edamontology.org/format_1929</uri><term>FASTA</term></format><format><uri>http://edamontology.org/format_3508</uri><term>PDF</term></format></output></function><link><url>http://github.com/wilzbach/msa</url><type>Helpdesk</type></link><link><url>http://www.bioinf.jku.at/software/msa/</url><type>Mirror</type></link><link><url>https://github.com/wilzbach/msa</url><type>Repository</type></link><link><url>http://biojs.io/</url><type>Software catalogue</type></link><download><url>https://github.com/UBod/msa</url><type>Source code</type></download><documentation><url>https://bioconductor.org/packages/msa</url><type>User manual</type></documentation><publication><doi>10.1093/bioinformatics/btv494</doi></publication><credit><name>Christoph Kainrath</name><typeEntity>Person</typeEntity><typeRole>Developer</typeRole></credit><credit><name>Enrico Bonatesta</name><typeEntity>Person</typeEntity><typeRole>Developer</typeRole></credit><credit><name>Ulrich Bodenhofer</name><typeEntity>Person</typeEntity><typeRole>Developer</typeRole><typeRole>Maintainer</typeRole></credit></tool><tool><name>ProteinIQ</name><description>Browser-based bioinformatics platform for running protein structure prediction, molecular docking, protein design, molecular dynamics, sequence analysis, and related life-science workflows without local installation.</description><homepage>https://proteiniq.io/</homepage><biotoolsID>proteiniq</biotoolsID><biotoolsCURIE>biotools:proteiniq</biotoolsCURIE><toolType>Web application</toolType><toolType>Web API</toolType><toolType>Bioinformatics portal</toolType><toolType>Workbench</toolType><topic><uri>http://edamontology.org/topic_0078</uri><term>Proteins</term></topic><topic><uri>http://edamontology.org/topic_0081</uri><term>Structure analysis</term></topic><topic><uri>http://edamontology.org/topic_0080</uri><term>Sequence analysis</term></topic><topic><uri>http://edamontology.org/topic_2275</uri><term>Molecular modelling</term></topic><topic><uri>http://edamontology.org/topic_2258</uri><term>Cheminformatics</term></topic><topic><uri>http://edamontology.org/topic_0077</uri><term>Nucleic acids</term></topic><license>Proprietary</license><maturity>Mature</maturity><cost>Free of charge (with restrictions)</cost><accessibility>Open access (with restrictions)</accessibility><function><operation><uri>http://edamontology.org/operation_0474</uri><term>Protein structure prediction</term></operation><input><data><uri>http://edamontology.org/data_2976</uri><term>Protein sequence</term></data><format><uri>http://edamontology.org/format_1929</uri><term>FASTA</term></format></input><output><data><uri>http://edamontology.org/data_1460</uri><term>Protein structure</term></data><format><uri>http://edamontology.org/format_1476</uri><term>PDB</term></format><format><uri>http://edamontology.org/format_1477</uri><term>mmCIF</term></format></output><note>Representative function. Exact inputs, outputs, formats, and settings depend on the selected ProteinIQ tool.</note></function><function><operation><uri>http://edamontology.org/operation_0478</uri><term>Molecular docking</term></operation><input><data><uri>http://edamontology.org/data_1460</uri><term>Protein structure</term></data><format><uri>http://edamontology.org/format_1476</uri><term>PDB</term></format><format><uri>http://edamontology.org/format_1477</uri><term>mmCIF</term></format></input><input><data><uri>http://edamontology.org/data_2301</uri><term>SMILES string</term></data><format><uri>http://edamontology.org/format_1196</uri><term>SMILES</term></format></input><output><data><uri>http://edamontology.org/data_1461</uri><term>Protein-ligand complex</term></data><format><uri>http://edamontology.org/format_1476</uri><term>PDB</term></format><format><uri>http://edamontology.org/format_1477</uri><term>mmCIF</term></format></output><note>Representative docking function. ProteinIQ supports multiple docking methods with tool-specific ligand formats, preparation options, scores, poses, and downloadable structures.</note></function><function><operation><uri>http://edamontology.org/operation_2479</uri><term>Protein sequence analysis</term></operation><input><data><uri>http://edamontology.org/data_2976</uri><term>Protein sequence</term></data><format><uri>http://edamontology.org/format_1929</uri><term>FASTA</term></format></input><output><data><uri>http://edamontology.org/data_2048</uri><term>Report</term></data></output><note>Representative sequence-analysis function. Available reports and computed properties vary by the selected tool.</note></function><function><operation><uri>http://edamontology.org/operation_4008</uri><term>Protein design</term></operation><input><data><uri>http://edamontology.org/data_2976</uri><term>Protein sequence</term></data><format><uri>http://edamontology.org/format_1929</uri><term>FASTA</term></format></input><input><data><uri>http://edamontology.org/data_1460</uri><term>Protein structure</term></data><format><uri>http://edamontology.org/format_1476</uri><term>PDB</term></format><format><uri>http://edamontology.org/format_1477</uri><term>mmCIF</term></format></input><output><data><uri>http://edamontology.org/data_2976</uri><term>Protein sequence</term></data><format><uri>http://edamontology.org/format_1929</uri><term>FASTA</term></format></output><output><data><uri>http://edamontology.org/data_1460</uri><term>Protein structure</term></data><format><uri>http://edamontology.org/format_1476</uri><term>PDB</term></format><format><uri>http://edamontology.org/format_1477</uri><term>mmCIF</term></format></output><note>Representative design function. Individual ProteinIQ tools may design sequences, structures, binders, peptides, antibodies, or other molecular candidates.</note></function><link><url>https://proteiniq.io/app/tools</url><type>Service</type><note>Browse the available ProteinIQ tools.</note></link><link><url>https://proteiniq.io/contact</url><type>Helpdesk</type></link><link><url>https://www.linkedin.com/company/proteiniq/</url><type>Social media</type></link><link><url>https://x.com/ProteinIQ</url><type>Social media</type></link><link><url>https://www.reddit.com/r/ProteinIQ/</url><type>Discussion forum</type></link><download><url>https://proteiniq.io/api/v1/openapi.json</url><type>API specification</type><note>OpenAPI specification for the ProteinIQ public API.</note></download><documentation><url>https://proteiniq.io/docs</url><type>General</type></documentation><documentation><url>https://proteiniq.io/docs/start-guide</url><type>Quick start guide</type></documentation><documentation><url>https://proteiniq.io/docs/api</url><type>API documentation</type></documentation><documentation><url>https://proteiniq.io/docs/api/python-sdk</url><type>API documentation</type></documentation><documentation><url>https://proteiniq.io/legal/terms</url><type>Terms of use</type></documentation><publication><doi>10.3390/ijms26189189</doi><type>Usage</type><note>Publication reporting use of ProteinIQ for peptide-property calculations.</note></publication><credit><name>Matic Broz</name><email>support@proteiniq.io</email><url>https://proteiniq.io/authors/matic-broz</url><orcidid>https://orcid.org/0009-0008-4134-4631</orcidid><typeEntity>Person</typeEntity><typeRole>Developer</typeRole><typeRole>Maintainer</typeRole><typeRole>Provider</typeRole><typeRole>Documentor</typeRole><typeRole>Support</typeRole><typeRole>Primary contact</typeRole><note>Founder and developer of the ProteinIQ platform and hosted service. Individual scientific tools retain their original authorship and licensing.</note></credit><credit><name>ProteinIQ</name><url>https://proteiniq.io/</url><typeEntity>Project</typeEntity><typeRole>Provider</typeRole><typeRole>Maintainer</typeRole><typeRole>Support</typeRole></credit></tool><tool><name>gbatlas</name><description>Browser-based viewer for GenBank and GenPept records &#8212; .gb, .gbk, .gbff, .gp and plain GenBank text. Renders an interactive linear and circular feature map, including circular plasmid maps, alongside the annotated source text and the nucleotide/protein sequence. 

Translates CDS features using the record's own genetic code and translation qualifiers, flags where the stored /translation disagrees with a plain translation, and adds optional computed layers: ORF prediction and restriction-site mapping. Drag a range in the sequence band to select it, then copy that stretch &#8212; either strand, as DNA or as protein, plain or FASTA. Filters features by type, handles multi-record files, and keeps open records as local sessions, so a closed tab can be picked up where it was left. Runs entirely in the browser &#8212; files are never uploaded.</description><homepage>https://fishka.bio/gbatlas</homepage><biotoolsID>gbatlas</biotoolsID><biotoolsCURIE>biotools:gbatlas</biotoolsCURIE><toolType>Desktop application</toolType><toolType>Web application</toolType><topic><uri>http://edamontology.org/topic_0080</uri><term>Sequence analysis</term></topic><topic><uri>http://edamontology.org/topic_0622</uri><term>Genomics</term></topic><topic><uri>http://edamontology.org/topic_0092</uri><term>Data visualisation</term></topic><topic><uri>http://edamontology.org/topic_3511</uri><term>Nucleic acid sites, features and motifs</term></topic><operatingSystem>Windows</operatingSystem><operatingSystem>Linux</operatingSystem><operatingSystem>Mac</operatingSystem><language>TypeScript</language><license>Freeware</license><collectionID>fishka.bio</collectionID><maturity>Mature</maturity><cost>Free of charge</cost><accessibility>Open access</accessibility><function><operation><uri>http://edamontology.org/operation_0564</uri><term>Sequence visualisation</term></operation><operation><uri>http://edamontology.org/operation_0436</uri><term>Coding region prediction</term></operation><operation><uri>http://edamontology.org/operation_0371</uri><term>DNA translation</term></operation><operation><uri>http://edamontology.org/operation_0431</uri><term>Restriction site recognition</term></operation><input><data><uri>http://edamontology.org/data_0849</uri><term>Sequence record</term></data><format><uri>http://edamontology.org/format_1936</uri><term>GenBank format</term></format><format><uri>http://edamontology.org/format_1937</uri><term>genpept</term></format></input><output><data><uri>http://edamontology.org/data_0849</uri><term>Sequence record</term></data><format><uri>http://edamontology.org/format_1929</uri><term>FASTA</term></format></output><output><data><uri>http://edamontology.org/data_2976</uri><term>Protein sequence</term></data><format><uri>http://edamontology.org/format_1929</uri><term>FASTA</term></format></output></function><link><url>https://fishka.bio</url><type>Software catalogue</type><note>fishka.bio &#8212; the tool collection gbatlas belongs to</note></link><download><url>https://fishka.bio/download</url><type>Downloads page</type><note>Offline build &#8212; the same application as a self-contained archive, runs from local files with no server</note></download><documentation><url>https://fishka.bio/gbatlas/showcase</url><type>Training material</type><note>Showcase gallery &#8212; an annotated screenshot per task, from the circular plasmid map to CDS translation and restriction sites</note></documentation><publication><doi>10.5281/zenodo.21444547</doi><type>Other</type><version>2026.07.19</version><note>Software deposit (concept DOI &#8212; resolves to the latest version) covering the fishka.bio tools, including gbatlas.</note></publication><credit><name>Fishka Bio</name><email>swim@fishka.bio</email><url>https://fishka.bio</url><typeEntity>Project</typeEntity><typeRole>Primary contact</typeRole><typeRole>Developer</typeRole><typeRole>Maintainer</typeRole></credit></tool><tool><name>picklet</name><description>Browser-based tool to open almost any file that carries sequence &#8212; FASTA, FASTQ, GenBank, EMBL, Swiss-Prot, AB1/ABIF, SCF, Clustal, Stockholm, PHYLIP, NEXUS, MSF, PIR, MEGA, GFF3, SAM, BAM, GFA, PDB and ACE &#8212; see every sequence inside, pick the ones you want, and save them as FASTA. The format is detected from the file content, not from the extension, so unlabelled or misnamed files still open, and gzip-compressed files are unpacked in place. Records can be filtered by length, name, GC or sequence type, reverse-complemented, transcribed DNA&#8596;RNA or translated to protein, deduplicated and reordered before saving. Runs entirely in the browser &#8212; files are never uploaded.</description><homepage>https://fishka.bio/picklet</homepage><biotoolsID>picklet</biotoolsID><biotoolsCURIE>biotools:picklet</biotoolsCURIE><toolType>Desktop application</toolType><toolType>Web application</toolType><topic><uri>http://edamontology.org/topic_0080</uri><term>Sequence analysis</term></topic><topic><uri>http://edamontology.org/topic_3071</uri><term>Data management</term></topic><operatingSystem>Windows</operatingSystem><operatingSystem>Linux</operatingSystem><operatingSystem>Mac</operatingSystem><language>TypeScript</language><license>Freeware</license><collectionID>fishka.bio</collectionID><maturity>Mature</maturity><cost>Free of charge</cost><accessibility>Open access</accessibility><function><operation><uri>http://edamontology.org/operation_2121</uri><term>Sequence file editing</term></operation><operation><uri>http://edamontology.org/operation_0371</uri><term>DNA translation</term></operation><operation><uri>http://edamontology.org/operation_0233</uri><term>Sequence conversion</term></operation><operation><uri>http://edamontology.org/operation_0372</uri><term>DNA transcription</term></operation><operation><uri>http://edamontology.org/operation_3695</uri><term>Data filtering</term></operation><input><data><uri>http://edamontology.org/data_0849</uri><term>Sequence record</term></data><format><uri>http://edamontology.org/format_1948</uri><term>nbrf/pir</term></format><format><uri>http://edamontology.org/format_1929</uri><term>FASTA</term></format><format><uri>http://edamontology.org/format_1975</uri><term>GFF3</term></format><format><uri>http://edamontology.org/format_1930</uri><term>FASTQ</term></format><format><uri>http://edamontology.org/format_3001</uri><term>ACE</term></format><format><uri>http://edamontology.org/format_1982</uri><term>ClustalW format</term></format><format><uri>http://edamontology.org/format_1991</uri><term>mega</term></format><format><uri>http://edamontology.org/format_1476</uri><term>PDB</term></format><format><uri>http://edamontology.org/format_3976</uri><term>GFA 2</term></format><format><uri>http://edamontology.org/format_1997</uri><term>PHYLIP format</term></format><format><uri>http://edamontology.org/format_1632</uri><term>SCF</term></format><format><uri>http://edamontology.org/format_3975</uri><term>GFA 1</term></format><format><uri>http://edamontology.org/format_1961</uri><term>Stockholm format</term></format><format><uri>http://edamontology.org/format_3000</uri><term>AB1</term></format><format><uri>http://edamontology.org/format_2573</uri><term>SAM</term></format><format><uri>http://edamontology.org/format_1912</uri><term>Nexus format</term></format><format><uri>http://edamontology.org/format_1927</uri><term>EMBL format</term></format><format><uri>http://edamontology.org/format_2572</uri><term>BAM</term></format><format><uri>http://edamontology.org/format_1963</uri><term>UniProtKB format</term></format><format><uri>http://edamontology.org/format_1947</uri><term>GCG MSF</term></format><format><uri>http://edamontology.org/format_1936</uri><term>GenBank format</term></format></input><output><data><uri>http://edamontology.org/data_0850</uri><term>Sequence set</term></data><format><uri>http://edamontology.org/format_1929</uri><term>FASTA</term></format></output><output><data><uri>http://edamontology.org/data_2976</uri><term>Protein sequence</term></data><format><uri>http://edamontology.org/format_1929</uri><term>FASTA</term></format></output></function><link><url>https://fishka.bio</url><type>Software catalogue</type><note>fishka.bio &#8212; the tool collection picklet belongs to</note></link><download><url>https://fishka.bio/download</url><type>Downloads page</type><note>Offline build &#8212; the same application as a self-contained archive, runs from local files with no server</note></download><documentation><url>https://fishka.bio/picklet/showcase</url><type>Training material</type><note>Showcase gallery &#8212; an annotated screenshot per task, from opening an unlabelled file to filtering, translating and saving the picked records</note></documentation><publication><doi>10.5281/zenodo.21444547</doi><type>Other</type><version>2026.07.19</version><note>Software deposit (concept DOI &#8212; resolves to the latest version) covering the fishka.bio tools, including picklet.</note></publication><credit><name>Fishka Bio</name><email>swim@fishka.bio</email><url>https://fishka.bio</url><typeEntity>Project</typeEntity><typeRole>Primary contact</typeRole><typeRole>Developer</typeRole><typeRole>Maintainer</typeRole></credit></tool><tool><name>CognitionBioChem</name><description>A structural pharmacology workbench for cognition-related CNS targets, built so that a displayed number must trace to a computation. Runs Boltz-2 locally for structure prediction, validates chemistry with RDKit, enforces a provenance record on every value, and reports eight studies pre-registered under content hashes before any data was seen. 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A SMILES that fails to parse is shown as unverified.</note></function><link><url>https://github.com/hopejsh/CognitionBioChem</url><type>Repository</type></link><link><url>https://github.com/hopejsh/CognitionBioChem/issues</url><type>Issue tracker</type></link><download><url>https://github.com/hopejsh/CognitionBioChem/archive/refs/tags/v1.0.0.tar.gz</url><type>Source code</type><version>1.0.0</version></download><documentation><url>https://github.com/hopejsh/CognitionBioChem#readme</url><type>General</type></documentation><documentation><url>https://github.com/hopejsh/CognitionBioChem/blob/main/docs/REGISTRATION.md</url><type>Citation instructions</type></documentation><documentation><url>https://github.com/hopejsh/CognitionBioChem/blob/main/NOTICE</url><type>Terms of use</type><note>The `license` field above is Apache-2.0, which covers this project's code, but the repository is not single-licensed. It redistributes third-party scientific data that keeps its own terms: CC BY 4.0 (UniProt, AlphaFold DB), CC BY-SA 3.0 (ChEMBL-derived files -- SHARE-ALIKE, so reuse carries an obligation onward), CC0 1.0 (RCSB depositions) and MIT (Boltz-2 model outputs). NOTICE lists which files fall under which.</note></documentation><credit><name>Seung Ho Jung</name><email>seung.jung@gmail.com</email><orcidid>https://orcid.org/0000-0001-7914-5306</orcidid><typeEntity>Person</typeEntity><typeRole>Developer</typeRole><typeRole>Maintainer</typeRole></credit></tool><tool><name>peptide-qc</name><description>peptide-qc analyzes a standard peptide sequence and returns residue composition, elemental formula, average and monoisotopic mass, approximate charge and pI, and Kyte-Doolittle hydropathy. It is a deterministic command-line tool and JavaScript library for research software tests and teaching. 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it does not predict genes.</note></function><function><operation><uri>http://edamontology.org/operation_0239</uri><term>Sequence motif recognition</term></operation><input><data><uri>http://edamontology.org/data_2977</uri><term>Nucleic acid sequence</term></data><format><uri>http://edamontology.org/format_1964</uri><term>plain text format (unformatted)</term></format><format><uri>http://edamontology.org/format_1929</uri><term>FASTA</term></format></input><input><data><uri>http://edamontology.org/data_1353</uri><term>Sequence motif</term></data><format><uri>http://edamontology.org/format_1964</uri><term>plain text format (unformatted)</term></format></input><output><data><uri>http://edamontology.org/data_1255</uri><term>Sequence features</term></data><format><uri>http://edamontology.org/format_3464</uri><term>JSON</term></format></output><note>Finds overlapping IUPAC motif matches on the forward, reverse, or both strands.</note></function><link><url>https://github.com/madhusudan-kulkarni/computase</url><type>Repository</type></link><link><url>https://github.com/madhusudan-kulkarni/computase/issues</url><type>Issue tracker</type></link><download><url>https://pypi.org/project/computase/</url><type>Software package</type><version>0.1.1</version></download><download><url>https://github.com/madhusudan-kulkarni/computase/archive/refs/tags/v0.1.1.tar.gz</url><type>Source code</type><version>0.1.1</version></download><documentation><url>https://github.com/madhusudan-kulkarni/computase#readme</url><type>General</type><type>Installation instructions</type><type>Quick start guide</type><type>Citation instructions</type></documentation><documentation><url>https://github.com/madhusudan-kulkarni/computase/blob/main/CHANGELOG.md</url><type>Release notes</type></documentation><credit><name>Madhusudan Kulkarni</name><url>https://github.com/madhusudan-kulkarni/computase</url><orcidid>https://orcid.org/0009-0004-0270-9731</orcidid><typeEntity>Person</typeEntity><typeRole>Developer</typeRole><typeRole>Maintainer</typeRole><typeRole>Primary contact</typeRole></credit></tool><tool><name>ProSeqGO</name><description>ProSeqGO predicts Gene Ontology (GO) terms for protein sequences using ESM2 embeddings and a trained 1-Dimensional Convolutional Neural Network multi-label classifier. By integrating recent advances in protein language models, ProSeqGO facilitates large-scale, automated functional annotation directly from sequence input, empowering researchers to infer protein function, explore biological mechanisms, and accelerate discovery in genomics and proteomics.</description><homepage>https://proseqgo.com/</homepage><biotoolsID>proseqgo</biotoolsID><biotoolsCURIE>biotools:proseqgo</biotoolsCURIE><version>v1.0.0</version><toolType>Web service</toolType><toolType>Command-line tool</toolType><language>Bash</language><language>SQL</language><language>Python</language><license>MIT</license><cost>Free of charge</cost><accessibility>Open access</accessibility><function><operation><uri>http://edamontology.org/operation_1777</uri><term>Protein function prediction</term></operation><input><data><uri>http://edamontology.org/data_2976</uri><term>Protein sequence</term></data></input><output><data><uri>http://edamontology.org/data_2858</uri><term>Ontology concept</term></data></output><note>Predicts the probability of Gene Ontology (GO) term membership for an input protein sequence using ESM2 embeddings and 1D CNN</note></function><link><url>https://github.com/BehRoooz/proseqgo</url><type>Repository</type></link><download><url>https://github.com/BehRoooz/proseqgo/releases</url><type>Source code</type></download></tool><tool><name>RFdiffusion</name><description>RFdiffusion is an open source method for structure generation, with or without conditional information (a motif, target etc).</description><homepage>https://github.com/RosettaCommons/RFdiffusion</homepage><biotoolsID>RFdiffusion</biotoolsID><biotoolsCURIE>biotools:RFdiffusion</biotoolsCURIE><version>v1.1.0</version><toolType>Command-line tool</toolType><topic><uri>http://edamontology.org/topic_0082</uri><term>Structure prediction</term></topic><language>Python</language><language>Shell</language><license>Other</license><maturity>Mature</maturity><function><operation><uri>http://edamontology.org/operation_0476</uri><term>Ab initio structure prediction</term></operation><input><data><uri>http://edamontology.org/data_2976</uri><term>Protein sequence</term></data></input><output><data><uri>http://edamontology.org/data_1460</uri><term>Protein structure</term></data><format><uri>http://edamontology.org/format_1476</uri><term>PDB</term></format></output></function><documentation><url>https://sites.google.com/omsf.io/rfdiffusion/overview</url><type>General</type></documentation><publication><doi>10.1038/s41586-023-06415-8</doi><pmid>37433327</pmid><pmcid>PMC10468394</pmcid></publication></tool><tool><name>SPALN</name><description>Genome mapping and spliced alignment of cDNA or amino acid sequences</description><homepage>https://github.com/ogotoh/spaln</homepage><biotoolsID>spaln</biotoolsID><biotoolsCURIE>biotools:spaln</biotoolsCURIE><version>ver.3.0.8b</version><toolType>Command-line tool</toolType><topic><uri>http://edamontology.org/topic_0102</uri><term>Mapping</term></topic><language>C</language><language>Perl</language><language>C++</language><license>GPL-2.0</license><maturity>Mature</maturity><function><operation><uri>http://edamontology.org/operation_2429</uri><term>Mapping</term></operation><input><data><uri>http://edamontology.org/data_2977</uri><term>Nucleic acid sequence</term></data></input><input><data><uri>http://edamontology.org/data_2976</uri><term>Protein sequence</term></data></input><input><data><uri>http://edamontology.org/data_1234</uri><term>Sequence set (nucleic acid)</term></data></input><output><data><uri>http://edamontology.org/data_0863</uri><term>Sequence alignment</term></data></output></function><link><url>https://github.com/ogotoh/spaln</url><type>Repository</type></link><documentation><url>https://github.com/ogotoh/spaln</url><type>General</type></documentation><publication><doi>10.1093/nar/gkag357</doi><pmid>42134803</pmid><pmcid>PMC13175633</pmcid></publication><publication><doi>10.1093/bioinformatics/btn460</doi><pmid>18728043</pmid></publication><publication><doi>10.1093/nar/gks708</doi><pmid>22848105</pmid><pmcid>PMC3488211</pmcid></publication><publication><doi>10.1093/bioinformatics/16.3.190</doi><pmid>10869012</pmid></publication><publication><doi>10.1093/bioinformatics/btae517</doi><pmid>39152995</pmid><pmcid>PMC11361809</pmcid></publication><publication><doi>10.1007/978-1-0716-1036-7_5</doi><pmid>33289887</pmid></publication><publication><doi>10.1093/bioinformatics/btl067</doi><pmid>16500940</pmid></publication><credit><name>Osamu Gotoh</name><email>gotoh.osamu.67a@st.kyoto-u.ac.jp</email><orcidid>https://orcid.org/0009-0002-6750-1945</orcidid><typeEntity>Person</typeEntity></credit></tool><tool><name>screen_assembly</name><description>Screen a bacterial assembly (contigs/CDS or proteins) for nucleotide or protein sequences.

Pipeline that screens for presence of genes of interest (GOI) in bacterial assemblies. Generates multiple CSVs and plots that describe which genes are present and how variable their sequence is. Can use DNA or protein query sequences (GOIs) and DNA contigs/fastas or protein fastas as database (db) to search in.</description><homepage>https://github.com/shimbalama/screen_assembly</homepage><biotoolsID>screen_assembly</biotoolsID><biotoolsCURIE>biotools:screen_assembly</biotoolsCURIE><version>v1</version><toolType>Script</toolType><toolType>Command-line tool</toolType><topic><uri>http://edamontology.org/topic_0196</uri><term>Sequence assembly</term></topic><language>Python</language><license>MIT</license><maturity>Mature</maturity><function><operation><uri>http://edamontology.org/operation_2403</uri><term>Sequence analysis</term></operation><input><data><uri>http://edamontology.org/data_0925</uri><term>Sequence assembly</term></data><format><uri>http://edamontology.org/format_1929</uri><term>FASTA</term></format></input><output><data><uri>http://edamontology.org/data_2976</uri><term>Protein sequence</term></data></output><output><data><uri>http://edamontology.org/data_2977</uri><term>Nucleic acid sequence</term></data></output></function><link><url>https://github.com/shimbalama/screen_assembly</url><type>Repository</type></link><documentation><url>https://github.com/shimbalama/screen_assembly/wiki</url><type>General</type></documentation><publication><doi>10.1038/s41588-019-0417-8</doi><pmid>31133745</pmid><pmcid>PMC6650292</pmcid><type>Primary</type></publication><credit><name>Mark R. Davies</name><orcidid>https://orcid.org/0000-0001-6141-5179</orcidid><typeEntity>Person</typeEntity></credit></tool><tool><name>ProteinMPNN</name><description>Protein sequence design using deep learning.</description><homepage>https://github.com/dauparas/ProteinMPNN</homepage><biotoolsID>proteinmpnn</biotoolsID><biotoolsCURIE>biotools:proteinmpnn</biotoolsCURIE><toolType>Command-line tool</toolType><topic><uri>http://edamontology.org/topic_0130</uri><term>Protein folding, stability and design</term></topic><language>Python</language><license>MIT</license><function><operation><uri>http://edamontology.org/operation_4008</uri><term>Protein design</term></operation><output><data><uri>http://edamontology.org/data_2976</uri><term>Protein sequence</term></data></output></function><link><url>https://github.com/dauparas/ProteinMPNN</url><type>Repository</type></link><documentation><url>https://github.com/dauparas/ProteinMPNN/blob/main/README.md</url><type>General</type></documentation><publication><doi>10.1126/science.add2187</doi><pmid>36108050</pmid><pmcid>PMC9997061</pmcid><type>Primary</type></publication></tool><tool><name>shic</name><description>shic is a collection of shims for use in automated workflow composition</description><homepage>https://github.com/magnuspalmblad/shic</homepage><biotoolsID>shic</biotoolsID><biotoolsCURIE>biotools:shic</biotoolsCURIE><toolType>Script</toolType><license>MIT</license><cost>Free of charge</cost><accessibility>Open access</accessibility><elixirCommunity>Proteomics</elixirCommunity><elixirCommunity>Galaxy</elixirCommunity><elixirCommunity>Metabolomics</elixirCommunity><function><operation><uri>http://edamontology.org/operation_3434</uri><term>Conversion</term></operation><input><data><uri>http://edamontology.org/data_0896</uri><term>Protein report</term></data><format><uri>http://edamontology.org/format_3747</uri><term>protXML</term></format></input><output><data><uri>http://edamontology.org/data_2872</uri><term>ID list</term></data><format><uri>http://edamontology.org/format_3475</uri><term>TSV</term></format></output></function><function><operation><uri>http://edamontology.org/operation_3434</uri><term>Conversion</term></operation><input><data><uri>http://edamontology.org/data_2536</uri><term>Mass spectrometry data</term></data><format><uri>http://edamontology.org/format_3651</uri><term>MGF</term></format></input><output><data><uri>http://edamontology.org/data_2536</uri><term>Mass spectrometry data</term></data><format><uri>http://edamontology.org/format_3651</uri><term>MGF</term></format></output></function><function><operation><uri>http://edamontology.org/operation_3434</uri><term>Conversion</term></operation><input><data><uri>http://edamontology.org/data_0870</uri><term>Sequence distance matrix</term></data><format><uri>http://edamontology.org/format_1912</uri><term>Nexus format</term></format></input><output><data><uri>http://edamontology.org/data_0870</uri><term>Sequence distance matrix</term></data><format><uri>http://edamontology.org/format_1991</uri><term>mega</term></format></output></function><function><operation><uri>http://edamontology.org/operation_3434</uri><term>Conversion</term></operation><input><data><uri>http://edamontology.org/data_2976</uri><term>Protein sequence</term></data><format><uri>http://edamontology.org/format_1929</uri><term>FASTA</term></format></input><output><data><uri>http://edamontology.org/data_3021</uri><term>UniProt accession</term></data><format><uri>http://edamontology.org/format_3475</uri><term>TSV</term></format></output></function><function><operation><uri>http://edamontology.org/operation_3434</uri><term>Conversion</term></operation><input><data><uri>http://edamontology.org/data_0945</uri><term>Peptide identification</term></data><format><uri>http://edamontology.org/format_3655</uri><term>pepXML</term></format></input><output><data><uri>http://edamontology.org/data_2976</uri><term>Protein sequence</term></data><format><uri>http://edamontology.org/format_3475</uri><term>TSV</term></format></output></function><function><operation><uri>http://edamontology.org/operation_3434</uri><term>Conversion</term></operation><input><data><uri>http://edamontology.org/data_0945</uri><term>Peptide identification</term></data><format><uri>http://edamontology.org/format_3247</uri><term>mzIdentML</term></format></input><output><data><uri>http://edamontology.org/data_2976</uri><term>Protein sequence</term></data><format><uri>http://edamontology.org/format_3475</uri><term>TSV</term></format></output></function><function><operation><uri>http://edamontology.org/operation_3434</uri><term>Conversion</term></operation><input><data><uri>http://edamontology.org/data_0972</uri><term>Text mining report</term></data><format><uri>http://edamontology.org/format_2332</uri><term>XML</term></format></input><output><data><uri>http://edamontology.org/data_1174</uri><term>ChEBI ID</term></data><format><uri>http://edamontology.org/format_3475</uri><term>TSV</term></format></output></function><function><operation><uri>http://edamontology.org/operation_3434</uri><term>Conversion</term></operation><input><data><uri>http://edamontology.org/data_0945</uri><term>Peptide identification</term></data><format><uri>http://edamontology.org/format_3475</uri><term>TSV</term></format></input><output><data><uri>http://edamontology.org/data_0945</uri><term>Peptide identification</term></data><format><uri>http://edamontology.org/format_3247</uri><term>mzIdentML</term></format></output></function><function><operation><uri>http://edamontology.org/operation_3434</uri><term>Conversion</term></operation><input><data><uri>http://edamontology.org/data_0896</uri><term>Protein report</term></data><format><uri>http://edamontology.org/format_3475</uri><term>TSV</term></format></input><output><data><uri>http://edamontology.org/data_2872</uri><term>ID list</term></data><format><uri>http://edamontology.org/format_3475</uri><term>TSV</term></format></output></function><function><operation><uri>http://edamontology.org/operation_3434</uri><term>Conversion</term></operation><input><data><uri>http://edamontology.org/data_0945</uri><term>Peptide identification</term></data><format><uri>http://edamontology.org/format_3655</uri><term>pepXML</term></format></input><output><data><uri>http://edamontology.org/data_1009</uri><term>Protein name</term></data><format><uri>http://edamontology.org/format_2330</uri><term>Textual format</term></format></output></function><function><operation><uri>http://edamontology.org/operation_3434</uri><term>Conversion</term></operation><input><data><uri>http://edamontology.org/data_0945</uri><term>Peptide identification</term></data><format><uri>http://edamontology.org/format_3655</uri><term>pepXML</term></format></input><output><data><uri>http://edamontology.org/data_2764</uri><term>Protein name (UniProt)</term></data><format><uri>http://edamontology.org/format_2330</uri><term>Textual format</term></format></output></function><link><url>https://github.com/magnuspalmblad/shic</url><type>Repository</type></link><documentation><url>https://github.com/magnuspalmblad/shic/blob/main/README.md</url><type>General</type></documentation><credit><name>Magnus Palmblad</name><email>magnus.palmblad@gmail.com</email><orcidid>https://orcid.org/0000-0002-5865-8994</orcidid><typeRole>Primary contact</typeRole></credit><credit><name>Veit Schw&#228;mmle</name><orcidid>https://orcid.org/0000-0002-9708-6722</orcidid></credit><credit><name>Dirk Winkelhardt</name><orcidid>https://orcid.org/0000-0001-8770-2221</orcidid></credit><credit><name>Vedran Kasalica</name><orcidid>https://orcid.org/0000-0002-0097-1056</orcidid></credit><credit><name>Anna-Lena Lamprecht</name><orcidid>https://orcid.org/0000-0003-1953-5606</orcidid></credit></tool><tool><name>GPCRchimeraDB</name><description>GPCRchimeraDB: A database to support the design of novel chimeric G-Protein Coupled Receptors (GPCRs) to unravel signaling pathways, characterize key regions and facilitate the design of new receptors for drug discovery. It is the first database to centralize chimeric GPCRs into one central repository, offering extensive descriptions at the sequence, structural, and biophysical levels through user-friendly visualization tools, while linking them to their parent GPCRs. Furthermore, GPCRchimeraDB expands the description of natural GPCRs compared to existing databases like GPCRdb and IUPHAR by including their biophysical profiles and integrating an interactive sequence-structure (1D-3D) visualization tool which helps to keep an overview of the large amount of data. Finally, GPCRchimeraDB incorporates a sequence alignment tool that has been demonstrated to outperform the current state-of-the-art tool for non-conventional GPCRs, which are critical targets in drug discovery.</description><homepage>https://bio2byte.be/gpcrchimeradb</homepage><biotoolsID>gpcrchimeradb</biotoolsID><biotoolsCURIE>biotools:gpcrchimeradb</biotoolsCURIE><version>2025-12.v1</version><toolType>Database portal</toolType><topic><uri>http://edamontology.org/topic_3047</uri><term>Molecular biology</term></topic><topic><uri>http://edamontology.org/topic_1317</uri><term>Structural biology</term></topic><topic><uri>http://edamontology.org/topic_3292</uri><term>Biochemistry</term></topic><topic><uri>http://edamontology.org/topic_3398</uri><term>Bioengineering</term></topic><license>CC-BY-4.0</license><collectionID>3D-BioInfo-Protein-Ligand-Interactions</collectionID><collectionID>gpcr</collectionID><accessibility>Open access</accessibility><elixirCommunity>3D-BioInfo</elixirCommunity><elixirNode>Belgium</elixirNode><function><operation><uri>http://edamontology.org/operation_3431</uri><term>Data deposition</term></operation><input><data><uri>http://edamontology.org/data_2976</uri><term>Protein sequence</term></data></input><input><data><uri>http://edamontology.org/data_2886</uri><term>Protein sequence record</term></data></input><input><data><uri>http://edamontology.org/data_1017</uri><term>Sequence range</term></data></input><input><data><uri>http://edamontology.org/data_2872</uri><term>ID list</term></data></input><input><data><uri>http://edamontology.org/data_0897</uri><term>Protein property</term></data></input><input><data><uri>http://edamontology.org/data_1460</uri><term>Protein structure</term></data></input><input><data><uri>http://edamontology.org/data_0970</uri><term>Citation</term></data></input><output><data><uri>http://edamontology.org/data_2019</uri><term>Map data</term></data></output><output><data><uri>http://edamontology.org/data_2884</uri><term>Plot</term></data></output><output><data><uri>http://edamontology.org/data_0897</uri><term>Protein property</term></data></output><output><data><uri>http://edamontology.org/data_1277</uri><term>Protein features</term></data></output><output><data><uri>http://edamontology.org/data_1233</uri><term>Sequence set (protein)</term></data></output></function><publication><doi>10.1016/j.jmb.2025.169164</doi><pmid>40268234</pmid><type>Primary</type></publication></tool><tool><name>PathoFact2</name><description>An Integrative Pipeline for Antimicrobial Resistance Genes, Virulence Factors, Toxin-associated proteins, and Biosynthetic Gene Clusters Prediction in Metagenomes</description><homepage>https://gitlab.com/uniluxembourg/lcsb/systems-ecology/pathofact2</homepage><biotoolsID>pathofact2</biotoolsID><biotoolsCURIE>biotools:pathofact2</biotoolsCURIE><version>2.0</version><toolType>Command-line tool</toolType><topic><uri>http://edamontology.org/topic_4013</uri><term>Antimicrobial resistance</term></topic><operatingSystem>Linux</operatingSystem><language>Python</language><language>R</language><language>Bash</language><license>GPL-3.0</license><cost>Free of charge</cost><accessibility>Open access</accessibility><function><operation><uri>http://edamontology.org/operation_3482</uri><term>Antimicrobial resistance prediction</term></operation><operation><uri>http://edamontology.org/operation_3461</uri><term>Virulence prediction</term></operation><input><data><uri>http://edamontology.org/data_0925</uri><term>Sequence assembly</term></data></input><input><data><uri>http://edamontology.org/data_2976</uri><term>Protein sequence</term></data></input><output><data><uri>http://edamontology.org/data_2048</uri><term>Report</term></data></output></function><link><url>https://gitlab.com/uniluxembourg/lcsb/systems-ecology/pathofact2</url><type>Repository</type></link><link><url>https://zenodo.org/records/14192463</url><type>Repository</type></link><link><url>https://zenodo.org/records/17647372</url><type>Repository</type></link><credit><name>Luis F. Delgado</name><email>luis.delgado@uni.lu</email><orcidid>https://orcid.org/0000-0001-7850-5285</orcidid></credit><credit><name>J&#250;lia Ort&#237;s Sunyer</name><email>julia.ortissunyer@uni.lu</email><orcidid>https://orcid.org/0000-0002-2714-7067</orcidid></credit><credit><name>Paul Wilmes</name><email>paul.wilmes@uni.lu</email><orcidid>https://orcid.org/0000-0002-6478-2924</orcidid></credit></tool><tool><name>prolfquapp</name><description>A command-line tool for differential expression analysis in quantitative proteomics</description><homepage>https://github.com/prolfqua/prolfquapp</homepage><biotoolsID>prolfquapp</biotoolsID><biotoolsCURIE>biotools:prolfquapp</biotoolsCURIE><version>0.1.6</version><toolType>Command-line tool</toolType><topic><uri>http://edamontology.org/topic_0121</uri><term>Proteomics</term></topic><operatingSystem>Mac</operatingSystem><operatingSystem>Linux</operatingSystem><language>R</language><license>MIT</license><maturity>Emerging</maturity><cost>Free of charge</cost><accessibility>Open access</accessibility><function><operation><uri>http://edamontology.org/operation_3741</uri><term>Differential protein expression profiling</term></operation><input><data><uri>http://edamontology.org/data_2603</uri><term>Expression data</term></data><format><uri>http://edamontology.org/format_3752</uri><term>CSV</term></format><format><uri>http://edamontology.org/format_3475</uri><term>TSV</term></format></input><input><data><uri>http://edamontology.org/data_2044</uri><term>Sequence</term></data><format><uri>http://edamontology.org/format_1929</uri><term>FASTA</term></format></input><output><data><uri>http://edamontology.org/data_2603</uri><term>Expression data</term></data><format><uri>http://edamontology.org/format_3620</uri><term>xlsx</term></format><format><uri>http://edamontology.org/format_2331</uri><term>HTML</term></format></output><cmd>./prolfqua_dea.sh -i data_dir/ -d annotation.xlsx -y config.yaml -w NameOfAnalysis -s DIANN
# and again you run the version within the docker container with
# ./prolfquapp_docker.sh prolfqua_dea.sh -i data_dir/ -d annotation.xlsx -y config.yaml -w NameOfAnalysis -s DIANN</cmd></function><function><operation><uri>http://edamontology.org/operation_2428</uri><term>Validation</term></operation><input><data><uri>http://edamontology.org/data_2603</uri><term>Expression data</term></data><format><uri>http://edamontology.org/format_3620</uri><term>xlsx</term></format></input><output><data><uri>http://edamontology.org/data_3914</uri><term>Quality control report</term></data><format><uri>http://edamontology.org/format_2331</uri><term>HTML</term></format></output></function><function><operation><uri>http://edamontology.org/operation_0571</uri><term>Expression data visualisation</term></operation><input><data><uri>http://edamontology.org/data_2603</uri><term>Expression data</term></data><format><uri>http://edamontology.org/format_3752</uri><term>CSV</term></format><format><uri>http://edamontology.org/format_3475</uri><term>TSV</term></format></input><input><data><uri>http://edamontology.org/data_2976</uri><term>Protein sequence</term></data><format><uri>http://edamontology.org/format_1929</uri><term>FASTA</term></format></input><output><data><uri>http://edamontology.org/data_2603</uri><term>Expression data</term></data><format><uri>http://edamontology.org/format_2331</uri><term>HTML</term></format><format><uri>http://edamontology.org/format_3508</uri><term>PDF</term></format></output></function><link><url>https://github.com/prolfqua/prolfquapp</url><type>Repository</type></link><link><url>https://github.com/prolfqua/prolfquapp/issues</url><type>Issue tracker</type></link><download><url>https://github.com/prolfqua/prolfquapp/releases/tag/0.1.6</url><type>Downloads page</type><version>0.1.6</version></download><documentation><url>https://github.com/prolfqua/prolfquapp/blob/master/README.md</url><type>General</type></documentation><publication><doi>10.1021/acs.jproteome.4c00911</doi><type>Primary</type><version>0.0.6</version></publication></tool><tool><name>PeptideShaker</name><description>PeptideShaker is a search engine independent platform for interpretation of proteomics identification results from multiple search engines, currently supporting X!Tandem, MS-GF+, MS Amanda, OMSSA, MyriMatch, Comet, Tide, Mascot, Andromeda and mzIdentML. 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simulation</term></operation><input><data><uri>http://edamontology.org/data_2976</uri><term>Protein sequence</term></data><format><uri>http://edamontology.org/format_1929</uri><term>FASTA</term></format></input><output><data><uri>http://edamontology.org/data_3869</uri><term>Simulation</term></data><format><uri>http://edamontology.org/format_3752</uri><term>CSV</term></format><format><uri>http://edamontology.org/format_3508</uri><term>PDF</term></format></output></function><publication><doi>10.1021/acs.jproteome.1c00136</doi><pmid>33904308</pmid><pmcid>PMC8185883</pmcid><type>Primary</type></publication></tool><tool><name>EPIK</name><description>Precise and scalable evolutionary placement with informative k-mers.</description><homepage>https://github.com/phylo42/EPIK</homepage><biotoolsID>epik</biotoolsID><biotoolsCURIE>biotools:epik</biotoolsCURIE><version>0.2.0</version><toolType>Command-line 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Rivals</name><email>rivals@lirmm.fr</email><orcidid>https://orcid.org/0000-0003-3791-3973</orcidid><typeEntity>Person</typeEntity></credit></tool><tool><name>MASSPEC</name><description>MASSPEC is (or was) a computer program for the complete sequence analysis of large proteins from a single mass spectrum, a precursor to modern-day software for de novo sequencing and top-down proteomics.</description><homepage>https://doi.org/10.1016/0010-4825(70)90013-2</homepage><biotoolsID>masspec</biotoolsID><biotoolsCURIE>biotools:masspec</biotoolsCURIE><toolType>Command-line tool</toolType><topic><uri>http://edamontology.org/topic_0121</uri><term>Proteomics</term></topic><language>Fortran</language><maturity>Legacy</maturity><function><operation><uri>http://edamontology.org/operation_2479</uri><term>Protein sequence analysis</term></operation><input><data><uri>http://edamontology.org/data_0943</uri><term>Mass spectrum</term></data><format><uri>http://edamontology.org/format_2330</uri><term>Textual format</term></format></input><output><data><uri>http://edamontology.org/data_2976</uri><term>Protein sequence</term></data><format><uri>http://edamontology.org/format_2330</uri><term>Textual format</term></format></output></function><publication><doi>10.1016/0010-4825(70)90013-2</doi><pmid>5524587</pmid><type>Primary</type></publication></tool><tool><name>DDGemb</name><description>Predicting the impact of mutations on protein stability from sequence using protein language models</description><homepage>https://ddgemb.biocomp.unibo.it</homepage><biotoolsID>ddgemb</biotoolsID><biotoolsCURIE>biotools:ddgemb</biotoolsCURIE><version>1</version><topic><uri>http://edamontology.org/topic_0130</uri><term>Protein folding, stability and design</term></topic><topic><uri>http://edamontology.org/topic_0199</uri><term>Genetic variation</term></topic><topic><uri>http://edamontology.org/topic_3325</uri><term>Rare diseases</term></topic><maturity>Mature</maturity><cost>Free of charge</cost><accessibility>Open access</accessibility><elixirPlatform>Tools</elixirPlatform><elixirCommunity>Rare Diseases</elixirCommunity><elixirCommunity>3D-BioInfo</elixirCommunity><elixirNode>Italy</elixirNode><function><operation><uri>http://edamontology.org/operation_0250</uri><term>Protein property calculation</term></operation><input><data><uri>http://edamontology.org/data_2976</uri><term>Protein sequence</term></data></input><input><data><uri>http://edamontology.org/data_3498</uri><term>Sequence variations</term></data></input><output><data><uri>http://edamontology.org/data_0896</uri><term>Protein report</term></data></output></function><documentation><url>https://ddgemb.biocomp.unibo.it/help/</url><type>General</type></documentation><publication><doi>10.1093/bioinformatics/btaf019</doi><pmid>39799516</pmid><pmcid>PMC11783275</pmcid><type>Primary</type></publication><credit><name>ELIXIR-ITA-BOLOGNA</name><url>https://www.biocomp.unibo.it</url><typeEntity>Institute</typeEntity><typeRole>Provider</typeRole></credit><credit><name>Castrense Savojardo</name><email>castrense.savojardo2@unibo.it</email><orcidid>https://orcid.org/0000-0002-7359-0633</orcidid><typeEntity>Person</typeEntity><typeRole>Maintainer</typeRole><typeRole>Developer</typeRole><typeRole>Primary contact</typeRole></credit></tool><tool><name>UniversalMer</name><description>UniversalMer is a k-mer counting tool for multiple size of k at once. It is available for DNA, RNA, and protein sequences. The program counts and summarizes the exact frequency of all k-mers from 1-mer to a user-defined maximum length (kmax). Analyzing the k-mer spectrum across multiple values of k can be done in seconds. This program is designed for bioinformatics researchers and scientists.</description><homepage>https://ugrammer.github.io</homepage><biotoolsID>UniversalMer</biotoolsID><biotoolsCURIE>biotools:UniversalMer</biotoolsCURIE><version>2.0.0</version><toolType>Command-line tool</toolType><topic><uri>http://edamontology.org/topic_0091</uri><term>Bioinformatics</term></topic><topic><uri>http://edamontology.org/topic_3473</uri><term>Data mining</term></topic><topic><uri>http://edamontology.org/topic_0080</uri><term>Sequence analysis</term></topic><operatingSystem>Windows</operatingSystem><operatingSystem>Mac</operatingSystem><language>C++</language><language>C</language><license>Freeware</license><maturity>Emerging</maturity><cost>Free of charge</cost><accessibility>Open access</accessibility><elixirPlatform>Tools</elixirPlatform><elixirNode>UK</elixirNode><function><operation><uri>http://edamontology.org/operation_3472</uri><term>k-mer counting</term></operation><input><data><uri>http://edamontology.org/data_3494</uri><term>DNA sequence</term></data><format><uri>http://edamontology.org/format_2546</uri><term>FASTA-like</term></format></input><input><data><uri>http://edamontology.org/data_3495</uri><term>RNA sequence</term></data><format><uri>http://edamontology.org/format_2546</uri><term>FASTA-like</term></format></input><input><data><uri>http://edamontology.org/data_2976</uri><term>Protein sequence</term></data><format><uri>http://edamontology.org/format_2546</uri><term>FASTA-like</term></format></input><output><data><uri>http://edamontology.org/data_1266</uri><term>Base word frequencies table</term></data></output><output><data><uri>http://edamontology.org/data_1265</uri><term>Base frequencies table</term></data></output><output><data><uri>http://edamontology.org/data_3671</uri><term>Text</term></data></output></function><link><url>https://sourceforge.net/projects/universal-mer/</url><type>Mirror</type></link><download><url>https://sourceforge.net/projects/universal-mer/</url><type>Command-line specification</type><version>2.0</version></download></tool><tool><name>ProteinPrompt</name><description>A webserver for predicting protein-protein interactions.</description><homepage>http://proteinformatics.org/ProteinPrompt</homepage><biotoolsID>proteinprompt</biotoolsID><biotoolsCURIE>biotools:proteinprompt</biotoolsCURIE><toolType>Web application</toolType><topic><uri>http://edamontology.org/topic_0128</uri><term>Protein interactions</term></topic><topic><uri>http://edamontology.org/topic_3474</uri><term>Machine learning</term></topic><topic><uri>http://edamontology.org/topic_3957</uri><term>Protein interaction experiment</term></topic><topic><uri>http://edamontology.org/topic_0121</uri><term>Proteomics</term></topic><topic><uri>http://edamontology.org/topic_0154</uri><term>Small molecules</term></topic><operatingSystem>Mac</operatingSystem><operatingSystem>Linux</operatingSystem><operatingSystem>Windows</operatingSystem><language>Python</language><cost>Free of charge</cost><accessibility>Open access</accessibility><function><operation><uri>http://edamontology.org/operation_2492</uri><term>Protein interaction prediction</term></operation><operation><uri>http://edamontology.org/operation_2421</uri><term>Database search</term></operation><operation><uri>http://edamontology.org/operation_2464</uri><term>Protein-protein binding site prediction</term></operation><input><data><uri>http://edamontology.org/data_2976</uri><term>Protein sequence</term></data></input></function><link><url>https://gitlab.hzdr.de/proteinprompt/ProteinPrompt</url><type>Repository</type></link><publication><doi>10.1101/2021.09.03.458859</doi></publication><credit><name>Ren&#233; Staritzbichler</name><email>rene.staritzbichler@medizin.uni-leipzig.de</email><orcidid>https://orcid.org/0000-0002-6719-2997</orcidid></credit><credit><name>Peter W. Hildebrand</name><orcidid>https://orcid.org/0000-0003-0063-1104</orcidid></credit><credit><name>Sebastian Canzler</name><orcidid>https://orcid.org/0000-0001-7935-9582</orcidid></credit><credit><name>Markus Fischer</name></credit><credit><name>David Ulbricht</name></credit><credit><name>Nikola Ristic</name></credit></tool><tool><name>PEP-FOLD4</name><description>PEP-FOLD4 is a fast and accurate structure prediction tool for peptides of up to 40 amino acids in aqueous solutions. Unlike many machine-learning approaches (e.g., AlphaFold2, TrRosetta, RaptorX), it integrates the Debye-H&#252;ckel formalism for charged side-chain interactions with a Mie potential for intramolecular forces. 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