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Updated: Jan 7, 2026

RhoC GTPase Activation Assay
Published on: August 22, 2010
Pan-cancer analyses identify oncogenic drivers, expression signatures, and therapeutic vulnerabilities in RHO GTPase
Rubén Fernández1,2,3, L Francisco Lorenzo-Martín1,2,3, Víctor Quesada3,4
1Molecular Mechanisms of Cancer Program, Centro de Investigación del Cáncer, CSIC and Universidad de Salamanca, Salamanca, Spain.
Abstract:
RHO family GTPases are key regulators of cancer-related processes such as cytoskeletal dynamics and cell migration, proliferation, and survival. Despite this, a comprehensive understanding of RHO signaling alterations across tumors is still lacking. In this study, we present a pan-cancer analysis of 484 genes encoding RHO GTPases, regulators, proximal effectors, distal downstream signaling elements, and components of their proximal interactomes using data from over 10,000 tumor samples and 33 tumor types present in The Cancer Genome Atlas (TCGA). In addition, we have utilized available data from genome-wide functional dependency screens performed in more than 1,000 gene-edited cancer cell lines. This study has uncovered positively selected mutations in both well-known and previously uncharacterized RHO pathway genes. Transcriptomic profiling reveals widespread and tumor-specific differential expression patterns, with some of them correlating with copy number changes. Interestingly, certain regulators exhibit consistent expression profiles across tumors opposite to those predicted from their canonical roles. Co-expression and gene set enrichment analyses highlight coordinated transcriptional programs involving some RHO GTPase pathway genes and their linkage to key cancer hallmarks, including extracellular matrix reorganization, cell motility, cell cycle progression, cell survival, and immune modulation. Functional screens further identify context-specific dependencies on several deregulated RHO GTPase pathway genes. Altogether, this study provides a comprehensive map of RHO GTPase pathway alterations in cancer and identifies new oncogenic drivers, expression-based signatures, and therapeutic vulnerabilities that could guide future mechanistic and translational research in this area.
Insights
This study maps RHO GTPase pathway alterations across 33 cancer types, revealing new mutations and expression changes. It identifies RHO pathway vulnerabilities and potential drivers for cancer research.
Area of Science:
- Oncology
- Molecular Biology
- Genomics
Background:
- RHO GTPases regulate critical cancer processes like migration and survival.
- A comprehensive understanding of RHO signaling in diverse tumors is currently limited.
Purpose of the Study:
- To conduct a pan-cancer analysis of RHO GTPase pathway alterations.
- To identify novel oncogenic drivers, expression signatures, and therapeutic vulnerabilities.
Main Methods:
- Analyzed 484 RHO pathway genes across >10,000 tumor samples from The Cancer Genome Atlas (TCGA).
- Integrated data from genome-wide functional dependency screens in >1,000 cancer cell lines.
- Utilized transcriptomic profiling, co-expression, and gene set enrichment analyses.
Main Results:
- Discovered positively selected mutations in known and novel RHO pathway genes.
- Observed widespread, tumor-specific differential gene expression patterns, some linked to copy number changes.
- Identified coordinated transcriptional programs connecting RHO pathway genes to cancer hallmarks and context-specific dependencies.
Conclusions:
- Provides a comprehensive map of RHO GTPase pathway alterations in cancer.
- Highlights new oncogenic drivers and expression signatures.
- Uncovers potential therapeutic vulnerabilities for future research.
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