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Induction of Mesenchymal-Epithelial Transitions in Sarcoma Cells
Published on: April 7, 2017
RBMS1 Suppresses Colon Cancer Metastasis through Targeted Stabilization of Its mRNA Regulon
Johnny Yu1,2,3, Albertas Navickas1,2,3, Hosseinali Asgharian1,2,3
1Department of Biochemistry & Biophysics, University of California, San Francisco, San Francisco, California.
Abstract:
Identifying master regulators that drive pathologic gene expression is a key challenge in precision oncology. Here, we have developed an analytic framework, named PRADA, that identifies oncogenic RNA-binding proteins through the systematic detection of coordinated changes in their target regulons. Application of this approach to data collected from clinical samples, patient-derived xenografts, and cell line models of colon cancer metastasis revealed the RNA-binding protein RBMS1 as a suppressor of colon cancer progression. We observed that silencing RBMS1 results in increased metastatic capacity in xenograft mouse models, and that restoring its expression blunts metastatic liver colonization. We have found that RBMS1 functions as a posttranscriptional regulator of RNA stability by directly binding its target mRNAs. Together, our findings establish a role for RBMS1 as a previously unknown regulator of RNA stability and as a suppressor of colon cancer metastasis with clinical utility for risk stratification of patients. SIGNIFICANCE: By applying a new analytic approach to transcriptomic data from clinical samples and models of colon cancer progression, we have identified RBMS1 as a suppressor of metastasis and as a post-transcriptional regulator of RNA stability. Notably, RBMS1 silencing and downregulation of its targets are negatively associated with patient survival.See related commentary by Carter, p. 1261.This article is highlighted in the In This Issue feature, p. 1241.
Insights
We identified RBMS1 as a suppressor of colon cancer metastasis using a new analytic framework. Silencing RBMS1 increased metastasis, while restoring its expression reduced it, highlighting its role in RNA stability.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Identifying master regulators of pathologic gene expression is crucial for precision oncology.
- RNA-binding proteins play significant roles in regulating gene expression.
Purpose of the Study:
- To develop an analytic framework (PRADA) for identifying oncogenic RNA-binding proteins.
- To investigate the role of RBMS1 in colon cancer metastasis.
Main Methods:
- Developed the PRADA analytic framework to detect coordinated changes in RNA-binding protein target regulons.
- Applied PRADA to transcriptomic data from colon cancer clinical samples, xenografts, and cell lines.
- Investigated the functional role of RBMS1 in metastasis using xenograft mouse models.
Main Results:
- Identified RBMS1 as a suppressor of colon cancer progression.
- RBMS1 silencing increased metastatic capacity in mouse models.
- RBMS1 directly binds target mRNAs, regulating RNA stability and suppressing metastasis.
- RBMS1 downregulation is associated with reduced patient survival.
Conclusions:
- RBMS1 is a novel suppressor of colon cancer metastasis and a post-transcriptional regulator of RNA stability.
- RBMS1 has potential clinical utility for stratifying patient risk in colon cancer.
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