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Updated: Jun 29, 2026

RhoC GTPase Activation Assay
Published on: August 22, 2010
Localized Rho GTPase activation regulates RNA dynamics and compartmentalization in tumor cell protrusions
Heather C Stuart1, Zongjian Jia, Anat Messenberg
1Department of Cellular and Physiological Sciences, Life Sciences Institute, University of British Columbia, Vancouver, British Columbia V6T 1Z3, Canada.
Abstract:
mRNA trafficking and local protein translation are associated with protrusive cellular domains, such as neuronal growth cones, and deregulated control of protein translation is associated with tumor malignancy. We show here that activated RhoA, but not Rac1, is enriched in pseudopodia of MSV-MDCK-INV tumor cells and that Rho, Rho kinase (ROCK), and myosin II regulate the microtubule-independent targeting of RNA to these tumor cell domains. ROCK inhibition does not affect pseudopodial actin turnover but significantly reduces the dynamics of pseudopodial RNA turnover. Gene array analysis shows that 7.3% of the total genes analyzed exhibited a greater than 1.6-fold difference between the pseudopod and cell body fractions. Of these, only 13.2% (261 genes) are enriched in pseudopodia, suggesting that only a limited number of total cellular mRNAs are enriched in tumor cell protrusions. Comparison of the tumor pseudopod mRNA cohort and a cohort of mRNAs enriched in neuronal processes identified tumor pseudopod-specific signaling networks that were defined by expression of M-Ras and the Shp2 protein phosphatase. Pseudopod expression of M-Ras and Shp2 mRNA were diminished by ROCK inhibition linking pseudopodial Rho/ROCK activation to the localized expression of specific mRNAs. Pseudopodial enrichment for mRNAs involved in protein translation and signaling suggests that local mRNA translation regulates pseudopodial expression of less stable signaling molecules as well as the cellular machinery to translate these mRNAs. Pseudopodial Rho/ROCK activation may impact on tumor cell migration and metastasis by stimulating the pseudopodial translocation of mRNAs and thereby regulating the expression of local signaling cascades.
Insights
RhoA and ROCK signaling regulate RNA transport into tumor cell pseudopodia, impacting local protein translation and potentially tumor cell migration. This highlights a novel mechanism for controlling gene expression in cellular protrusions.
Area of Science:
- Cell Biology
- Molecular Biology
- Cancer Research
Background:
- mRNA trafficking and local protein translation are crucial for cellular functions in protrusive domains like growth cones.
- Dysregulated protein translation control is linked to tumor malignancy and cancer progression.
Purpose of the Study:
- To investigate the role of RhoA and its downstream effectors in mRNA targeting to tumor cell pseudopodia.
- To identify specific mRNA populations enriched in tumor cell protrusions and their functional implications.
Main Methods:
- Utilized MSV-MDCK-INV tumor cells to analyze protein and mRNA localization in pseudopodia versus cell bodies.
- Employed Rho kinase (ROCK) inhibition to assess its impact on RNA and actin dynamics within pseudopodia.
- Conducted gene array analysis to compare mRNA profiles between pseudopod and cell body fractions.
Main Results:
- Activated RhoA, but not Rac1, is enriched in tumor cell pseudopodia.
- Rho/ROCK/myosin II pathway mediates microtubule-independent RNA targeting to pseudopodia.
- ROCK inhibition reduces pseudopodial RNA dynamics and alters the expression of specific pseudopod-enriched mRNAs, including M-Ras and Shp2.
Conclusions:
- Localized Rho/ROCK activation drives the translocation of specific mRNAs into tumor cell pseudopodia.
- This process supports local protein synthesis and regulates signaling cascades within protrusions.
- Pseudopodial mRNA targeting by Rho/ROCK may be a key mechanism influencing tumor cell migration and metastasis.
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