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Updated: May 10, 2026

RhoC GTPase Activation Assay
Published on: August 22, 2010
Rab5 activation promotes focal adhesion disassembly, migration and invasiveness in tumor cells
Pablo Mendoza1, Rina Ortiz, Jorge Díaz
1Department of Basic and Communitarian Sciences, Faculty of Dentistry, Universidad de Chile, Santiago 8380-492, Chile.
Abstract:
Migration and invasion are essential steps associated with tumor cell metastasis and increasing evidence points towards endosome trafficking being essential in this process. Indeed, the small GTPase Rab5, a crucial regulator of early endosome dynamics, promotes cell migration in vitro and in vivo. Precisely how Rab5 participates in these events remains to be determined. Considering that focal adhesions represent structures crucial to cell migration, we specifically asked whether Rab5 activation promoted focal adhesion disassembly and thereby facilitated migration and invasion of metastatic cancer cells. Pulldown and biosensor assays revealed that Rab5-GTP loading increased at the leading edge of migrating tumor cells. Additionally, targeting of Rab5 by different shRNA sequences, but not control shRNA, decreased Rab5-GTP levels, leading to reduced cell spreading, migration and invasiveness. Re-expression in knockdown cells of wild-type Rab5, but not the S34N mutant (GDP-bound), restored these properties. Importantly, Rab5 association with the focal adhesion proteins vinculin and paxillin increased during migration, and expression of wild-type, but not GDP-bound Rab5, accelerated focal adhesion disassembly, as well as FAK dephosphorylation on tyrosine 397. Finally, Rab5-driven invasiveness required focal adhesion disassembly, as treatment with the FAK inhibitor number 14 prevented Matrigel invasion and matrix metalloproteinase release. Taken together, these observations show that Rab5 activation is required to enhance cancer cell migration and invasion by promoting focal adhesion disassembly.
Insights
Rab5 activation promotes cancer cell migration and invasion by enhancing focal adhesion disassembly. This process is crucial for tumor metastasis, highlighting Rab5 as a potential therapeutic target.
Area of Science:
- Cell Biology
- Molecular Biology
- Cancer Research
Background:
- Tumor cell metastasis involves migration and invasion, processes increasingly linked to endosome trafficking.
- The small GTPase Rab5 regulates early endosome dynamics and is known to promote cancer cell migration.
Purpose of the Study:
- To investigate the role of Rab5 activation in focal adhesion disassembly and its contribution to cancer cell migration and invasion.
- To elucidate the molecular mechanisms by which Rab5 influences these metastatic processes.
Main Methods:
- Utilized pulldown and biosensor assays to measure Rab5-GTP levels at the leading edge of migrating tumor cells.
- Employed shRNA to target Rab5 expression and assessed effects on cell spreading, migration, and invasiveness.
- Investigated Rab5 association with focal adhesion proteins (vinculin, paxillin) and FAK phosphorylation during migration.
Main Results:
- Rab5-GTP loading increased at the leading edge of migrating tumor cells.
- Rab5 knockdown reduced cell spreading, migration, and invasiveness, which were restored by wild-type Rab5 re-expression.
- Rab5 promoted focal adhesion disassembly and FAK dephosphorylation, and this was essential for invasion.
Conclusions:
- Rab5 activation is a critical regulator of cancer cell migration and invasion.
- Rab5 enhances metastasis by promoting focal adhesion disassembly, a process dependent on FAK activity.
- Targeting Rab5 may offer a novel therapeutic strategy for inhibiting cancer metastasis.
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