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Multi-monoubiquitination controls VASP-mediated actin dynamics.


ABSTRACT: The actin cytoskeleton performs multiple cellular functions, and as such, actin polymerization must be tightly regulated. We previously demonstrated that reversible, non-degradative ubiquitination regulates the function of the actin polymerase VASP in developing neurons. However, the underlying mechanism of how ubiquitination impacts VASP activity was unknown. Here we show that mimicking multi-monoubiquitination of VASP at K240 and K286 negatively regulates VASP interactions with actin. Using in vitro biochemical assays, we demonstrate the reduced ability of multi-monoubiquitinated VASP to bind, bundle, and elongate actin filaments. However, multi-monoubiquitinated VASP maintained the ability to bind and protect barbed ends from capping protein. Lastly, we demonstrate the introduction of recombinant multi-monoubiquitinated VASP protein altered cell spreading morphology. Collectively, these results suggest a mechanism in which ubiquitination controls VASP-mediated actin dynamics.

SUBMITTER: McCormick LE 

PROVIDER: S-EPMC10370145 | biostudies-literature | 2023 Jul

REPOSITORIES: biostudies-literature

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Multi-monoubiquitination controls VASP-mediated actin dynamics.

McCormick Laura E LE   Suarez Cristian C   Herring Laura E LE   Cannon Kevin S KS   Kovar David R DR   Brown Nicholas G NG   Gupton Stephanie L SL  

bioRxiv : the preprint server for biology 20230717


The actin cytoskeleton performs multiple cellular functions, and as such, actin polymerization must be tightly regulated. We previously demonstrated that reversible, non-degradative ubiquitination regulates the function of the actin polymerase VASP in developing neurons. However, the underlying mechanism of how ubiquitination impacts VASP activity was unknown. Here we show that mimicking multi-monoubiquitination of VASP at K240 and K286 negatively regulates VASP interactions with actin. Using in  ...[more]

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