The STRING database in 2023: protein–protein association networks and functional enrichment analyses for any sequenced genome of interest

База данных STRING в 2023 году: сети ассоциаций белок–белок и анализ функционального обогащения для любого секвенированного генома
Damian Szklarczyk, Lars Juhl Jensen, Christian von Mering, Peer Bork, Rebecca Kirsch, Mikaela Koutrouli, Katerina Nastou, Farrokh Mehryary, Radja Hachilif, Annika L. Gable, Tao Fang, Nadezhda T. Doncheva, Sampo Pyysalo
2022-10-19

STRING databasefunctional enrichment analysisprotein–protein association networkssingle-cell RNA-seqvariational auto-encoders
Much of the complexity within cells arises from functional and regulatory interactions among proteins. The core of these interactions is increasingly known, but novel interactions continue to be discovered, and the information remains scattered across different database resources, experimental modalities and levels of mechanistic detail. The STRING database (https://string-db.org/) systematically collects and integrates protein-protein interactions-both physical interactions as well as functional associations. The data originate from a number of sources: automated text mining of the scientific literature, computational interaction predictions from co-expression, conserved genomic context, databases of interaction experiments and known complexes/pathways from curated sources. All of these interactions are critically assessed, scored, and subsequently automatically transferred to less well-studied organisms using hierarchical orthology information. The data can be accessed via the website, but also programmatically and via bulk downloads. The most recent developments in STRING (version 12.0) are: (i) it is now possible to create, browse and analyze a full interaction network for any novel genome of interest, by submitting its complement of encoded proteins, (ii) the co-expression channel now uses variational auto-encoders to predict interactions, and it covers two new sources, single-cell RNA-seq and experimental proteomics data and (iii) the confidence in each experimentally derived interaction is now estimated based on the detection method used, and communicated to the user in the web-interface. Furthermore, STRING continues to enhance its facilities for functional enrichment analysis, which are now fully available also for user-submitted genomes.
1
All interactions are assessed, scored, and automatically transferred to less-studied organisms using hierarchical orthology information.
2
Experimentally derived interaction confidence is now estimated based on the detection method used and presented to users in the web interface.
3
Functional enrichment analysis tools in STRING are enhanced and fully available for user-submitted genomes.
4
STRING systematically collects and integrates protein-protein interactions including physical interactions and functional associations from multiple sources.
5
The co-expression evidence channel now uses variational auto-encoders to predict interactions and incorporates single-cell RNA-seq and experimental proteomics data.
6
Version 12.0 allows users to create, browse, and analyze a full interaction network for any novel genome by submitting its encoded protein complement.

The STRING database (protein–protein association networks for sequenced genomes)

Systematic collection, integration, scoring and provision (including network creation, browsing, analysis and functional enrichment) of protein–protein interactions and functional associations for any submitted or sequenced genome

Publication Details
Publication Date
2022-10-19
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Authors
Damian Szklarczyk
Lars Juhl Jensen
Christian von Mering
Peer Bork
Rebecca Kirsch
Mikaela Koutrouli
Katerina Nastou
Farrokh Mehryary
Radja Hachilif
Annika L. Gable
Tao Fang
Nadezhda T. Doncheva
Sampo Pyysalo
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