Signal Transduction
Control of RhoA Methylation by Carboxylesterase I*

https://doi.org/10.1074/jbc.M113.467407Get rights and content
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A number of proteins that play key roles in cell signaling are post-translationally modified by the prenylation pathway. The final step in this pathway is methylation of the carboxyl terminus of the prenylated protein by isoprenylcysteine carboxylmethyltransferase. Due to the impact of methylation on Rho function, we sought to determine if the process was reversible and hence could control Rho function in a dynamic fashion. Elevating isoprenylcysteine carboxylmethyltransferase activity in cells has profound effects on MDA-MB-231 cell morphology, implying the presence of a pool of unmethylated prenyl proteins in these cells under normal conditions. Using a knockdown approach, we identified a specific esterase, carboxylesterase 1, whose function had a clear impact not only on the methylation status of RhoA but also RhoA activation and cell morphology. These data provide compelling evidence that C-terminal modification of prenyl proteins, rather than being purely a constitutive process, can serve as a point of regulation of function for this important class of protein.

Background: Methylation of Rho proteins by isoprenylcysteine carboxylmethyltransferase impacts their function.

Results: RhoA methylation is dynamic and impacted by carboxylesterase 1 activity.

Conclusion: Carboxylesterase 1 plays a role in controlling the methylation status and activation of RhoA and impacts cell morphology.

Significance: This study demonstrates that C-terminal methylation is under acute control and plays a major role in cell signaling.

Carboxylesterase
Post-translational Modification
Protein Isoprenylation
Protein Methylation
Rhoa
Methylation
Carboxylesterase 1
Isoprenylcysteine Carboxylmethyltransferase
Prenylation
rhoA

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This work was supported by the by the American Lebanese and Syrian Associated Charities and the St. Jude Children's Research Hospital.