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Updated: Jul 29, 2026

Spatio-Temporal Manipulation of Small GTPase Activity at Subcellular Level and on Timescale of Seconds in Living Cells
Published on: March 9, 2012
The RASSF1A isoform of RASSF1 promotes microtubule stability and suppresses tumorigenesis
L van der Weyden1, K K Tachibana, M A Gonzalez
1Wellcome Trust Sanger Institute, Wellcome Trust Genome Campus, Hinxton, Cambridge CB10 1SA, United Kingdom.
Abstract:
The RASSF1A isoform of RASSF1 is frequently inactivated by epigenetic alterations in human cancers, but it remains unclear if and how it acts as a tumor suppressor. RASSF1A overexpression reduces in vitro colony formation and the tumorigenicity of cancer cell lines in vivo. Conversely, RASSF1A knockdown causes multiple mitotic defects that may promote genomic instability. Here, we have used a genetic approach to address the function of RASSF1A as a tumor suppressor in vivo by targeted deletion of Rassf1A in the mouse. Rassf1A null mice were viable and fertile and displayed no pathological abnormalities. Rassf1A null embryonic fibroblasts displayed an increased sensitivity to microtubule depolymerizing agents. No overtly altered cell cycle parameters or aberrations in centrosome number were detected in Rassf1A null fibroblasts. Rassf1A null fibroblasts did not show increased sensitivity to microtubule poisons or DNA-damaging agents and showed no evidence of gross genomic instability, suggesting that cellular responses to genotoxins were unaffected. Rassf1A null mice showed an increased incidence of spontaneous tumorigenesis and decreased survival rate compared with wild-type mice. Irradiated Rassf1A null mice also showed increased tumor susceptibility, particularly to tumors associated with the gastrointestinal tract, compared with wild-type mice. Thus, our results demonstrate that Rassf1A acts as a tumor suppressor gene.
Insights
The Rassf1A gene acts as a tumor suppressor. Mice lacking Rassf1A showed increased tumor development and reduced survival, confirming its role in preventing cancer.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- The RASSF1A protein is frequently inactivated in human cancers via epigenetic changes.
- Its precise role as a tumor suppressor and the mechanisms involved remain largely unelucidated.
- Previous studies suggested RASSF1A influences cell division and tumorigenicity.
Purpose of the Study:
- To genetically determine the in vivo tumor suppressor function of Rassf1A.
- To investigate the impact of Rassf1A deletion on mouse physiology and cancer susceptibility.
Main Methods:
- Targeted deletion of the Rassf1A gene in mice to create Rassf1A null animals.
- Analysis of embryonic fibroblasts for cellular defects and sensitivity to genotoxins.
- Assessment of spontaneous and radiation-induced tumor incidence and survival rates in null versus wild-type mice.
Main Results:
- Rassf1A null mice were viable and fertile with no apparent abnormalities.
- Rassf1A null fibroblasts showed increased sensitivity to microtubule-disrupting agents but no gross genomic instability.
- Rassf1A null mice exhibited a higher incidence of spontaneous tumors and decreased survival, particularly in the gastrointestinal tract after irradiation.
Conclusions:
- Rassf1A functions as a tumor suppressor gene in vivo.
- Loss of Rassf1A leads to increased susceptibility to tumorigenesis, especially in the gastrointestinal tract.
- The findings support Rassf1A's role in maintaining genomic stability and preventing cancer development.
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