Vav2 catalysis-dependent pathways contribute to skeletal muscle growth and metabolic homeostasis.

Rodríguez-Fdez, Sonia; Lorenzo-Martín, L Francisco; Fernández-Pisonero, Isabel; Porteiro, Begoña; Veyrat-Durebex, Christelle; Beiroa, Daniel; Al-Massadi, Omar; Abad, Antonio et al. · Nat Commun · 2020

basic_science · Level V

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Abstract

Skeletal muscle promotes metabolic balance by regulating glucose uptake and the stimulation of multiple interorgan crosstalk. We show here that the catalytic activity of Vav2, a Rho GTPase activator, modulates the signaling output of the IGF1- and insulin-stimulated phosphatidylinositol 3-kinase pathway in that tissue. Consistent with this, mice bearing a Vav2 protein with decreased catalytic activity exhibit reduced muscle mass, lack of proper insulin responsiveness and, at much later times, a metabolic syndrome-like condition. Conversely, mice expressing a catalytically hyperactive Vav2 develop muscle hypertrophy and increased insulin responsiveness. Of note, while hypoactive Vav2 predisposes to, hyperactive Vav2 protects against high fat diet-induced metabolic imbalance. These data unveil a regulatory layer affecting the signaling output of insulin family factors in muscle.

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