Author: Türei, Dénes; Valdeolivas, Alberto; Gul, Lejla; Palacioâ€Escat, Nicolà s; Klein, Michal; Ivanova, Olga; Ölbei, Márton; Gábor, Attila; Theis, Fabian; Módos, DezsÅ‘; Korcsmáros, Tamás; Saezâ€Rodriguez, Julio
Title: Integrated intra†and intercellular signaling knowledge for multicellular omics analysis Cord-id: xa95el94 Document date: 2021_3_22
ID: xa95el94
Snippet: Molecular knowledge of biological processes is a cornerstone in omics data analysis. Applied to singleâ€cell data, such analyses provide mechanistic insights into individual cells and their interactions. However, knowledge of intercellular communication is scarce, scattered across resources, and not linked to intracellular processes. To address this gap, we combined over 100 resources covering interactions and roles of proteins in inter†and intracellular signaling, as well as transcriptional
Document: Molecular knowledge of biological processes is a cornerstone in omics data analysis. Applied to singleâ€cell data, such analyses provide mechanistic insights into individual cells and their interactions. However, knowledge of intercellular communication is scarce, scattered across resources, and not linked to intracellular processes. To address this gap, we combined over 100 resources covering interactions and roles of proteins in inter†and intracellular signaling, as well as transcriptional and postâ€transcriptional regulation. We added protein complex information and annotations on function, localization, and role in diseases for each protein. The resource is available for human, and via homology translation for mouse and rat. The data are accessible via OmniPath’s web service (https://omnipathdb.org/), a Cytoscape plugâ€in, and packages in R/Bioconductor and Python, providing access options for computational and experimental scientists. We created workflows with tutorials to facilitate the analysis of cell–cell interactions and affected downstream intracellular signaling processes. OmniPath provides a single access point to knowledge spanning intra†and intercellular processes for data analysis, as we demonstrate in applications studying SARSâ€CoVâ€2 infection and ulcerative colitis.
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