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An Integrated Global Analysis of Compartmentalized HRAS Signaling

Authors :
Science Foundation Ireland
Irish Cancer Society
European Commission
Netherlands Organization for Scientific Research
Centro de Investigación Biomédica en Red Cáncer (España)
Asociación Española Contra el Cáncer
Santra, Tapesh
Herrero, Ana
Rodríguez, Javier
Kriegsheim, Alexvon
Iglesias-Martinez, Luis F.
Schwarzl, Thomas
Higgins, Des
Aye, Thin-Thin
Heck, Albert J. R.
Calvo, Fernando
Agudo-Ibáñez, Lorena
Crespo, Piero
Matallanas, David
Kolch, Walter
Science Foundation Ireland
Irish Cancer Society
European Commission
Netherlands Organization for Scientific Research
Centro de Investigación Biomédica en Red Cáncer (España)
Asociación Española Contra el Cáncer
Santra, Tapesh
Herrero, Ana
Rodríguez, Javier
Kriegsheim, Alexvon
Iglesias-Martinez, Luis F.
Schwarzl, Thomas
Higgins, Des
Aye, Thin-Thin
Heck, Albert J. R.
Calvo, Fernando
Agudo-Ibáñez, Lorena
Crespo, Piero
Matallanas, David
Kolch, Walter
Publication Year :
2019

Abstract

Modern omics technologies allow us to obtain global information on different types of biological networks. However, integrating these different types of analyses into a coherent framework for a comprehensive biological interpretation remains challenging. Here, we present a conceptual framework that integrates protein interaction, phosphoproteomics, and transcriptomics data. Applying this method to analyze HRAS signaling from different subcellular compartments shows that spatially defined networks contribute specific functions to HRAS signaling. Changes in HRAS protein interactions at different sites lead to different kinase activation patterns that differentially regulate gene transcription. HRASmediated signaling is the strongest from the cell membrane, but it regulates the largest number of genes from the endoplasmic reticulum. The integrated networks provide a topologically and functionally resolved view of HRAS signaling. They reveal distinct HRAS functions including the control of cell migration from the endoplasmic reticulum and TP53-dependent cell survival when signaling from the Golgi apparatus.

Details

Database :
OAIster
Publication Type :
Electronic Resource
Accession number :
edsoai.on1286540490
Document Type :
Electronic Resource