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Molecular and cellular characterization of the interaction between the Rho GAP RGA-3/4 and F-actin

S. Kim, K. J. Sonnemann, A. A. Putnam, W. M. Bement

Preprint

En palabras de los autores

During cytokinesis in amphibian and echinoderm embryos, propagating waves of Rho activity and F-actin assembly - cortical excitability - are amplified and focused at the equatorial cortex by the mitotic spindle. Such cortical waves are proposed to result from fast positive feedback based on Rho and the Rho GEF, Ect2, and delayed negative feedback involving F-actin and the Rho GAP, RGA-3/4. Currently, this model is tenuous, in part because the relationship between F-actin and RGA-3/4 is not well understood. Therefore, we investigated how RGA-3/4 regulates F-actin structure both in vivo and in vitro. Full-length RGA-3/4, when expressed alone in Xenopus oocytes, localizes to and bundles cortical F-actin. In vitro, purified full-length RGA-3/4 protein directly binds to and bundles F-actin. TIRF microscopy revealed that RGA-3/4 binds to F-actin cooperatively and accumulates on the filaments before filament crosslinking events. Structure-function analyses demonstrated both the amino-terminal region and the intrinsically disordered region at the carboxyl-terminal portion of RGA-3/4 are essential for normal F-actin interaction. These results provide the first demonstration that RGA-3/4 is a direct, cooperative F-actin binding and bundling protein. We propose that its special features make RGA-3/4 uniquely suited to provide F-actin-dependent negative feedback during cortical excitability and cytokinesis.

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Apareció: miércoles, 23 de septiembre. bioRxiv. Preprint, todavía sin revisión por pares.

DOI: 10.64898/2026.09.18.752697