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  • Dual roles of mTORC1-dependent activation of the ubiquitin-proteasome system in muscle proteostasis.

Dual roles of mTORC1-dependent activation of the ubiquitin-proteasome system in muscle proteostasis.

Communications biology (2022-10-28)
Marco S Kaiser, Giulia Milan, Daniel J Ham, Shuo Lin, Filippo Oliveri, Kathrin Chojnowska, Lionel A Tintignac, Nitish Mittal, Christian E Zimmerli, David J Glass, Mihaela Zavolan, Markus A Rüegg
摘要

Muscle size is controlled by the PI3K-PKB/Akt-mTORC1-FoxO pathway, which integrates signals from growth factors, energy and amino acids to activate protein synthesis and inhibit protein breakdown. While mTORC1 activity is necessary for PKB/Akt-induced muscle hypertrophy, its constant activation alone induces muscle atrophy. Here we show that this paradox is based on mTORC1 activity promoting protein breakdown through the ubiquitin-proteasome system (UPS) by simultaneously inducing ubiquitin E3 ligase expression via feedback inhibition of PKB/Akt and proteasome biogenesis via Nuclear Factor Erythroid 2-Like 1 (Nrf1). Muscle growth was restored by reactivation of PKB/Akt, but not by Nrf1 knockdown, implicating ubiquitination as the limiting step. However, both PKB/Akt activation and proteasome depletion by Nrf1 knockdown led to an immediate disruption of proteome integrity with rapid accumulation of damaged material. These data highlight the physiological importance of mTORC1-mediated PKB/Akt inhibition and point to juxtaposed roles of the UPS in atrophy and proteome integrity.

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抗 层粘连蛋白-2(α-2 链)抗体,大鼠单克隆, clone 4H8-2, purified from hybridoma cell culture