The protein level of PGC-1α, a key metabolic regulator, is controlled by NADH-NQO1

PGC-1α 是一种关键的代谢调节剂,其蛋白质水平受 NADH-NQO1 控制

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作者:Yaarit Adamovich, Amir Shlomai, Peter Tsvetkov, Kfir B Umansky, Nina Reuven, Jennifer L Estall, Bruce M Spiegelman, Yosef Shaul

Abstract

PGC-1α is a key transcription coactivator regulating energy metabolism in a tissue-specific manner. PGC-1α expression is tightly regulated, it is a highly labile protein, and it interacts with various proteins--the known attributes of intrinsically disordered proteins (IDPs). In this study, we characterize PGC-1α as an IDP and demonstrate that it is susceptible to 20S proteasomal degradation by default. We further demonstrate that PGC-1α degradation is inhibited by NQO1, a 20S gatekeeper protein. NQO1 binds and protects PGC-1α from degradation in an NADH-dependent manner. Using different cellular physiological settings, we also demonstrate that NQO1-mediated PGC-1α protection plays an important role in controlling both basal and physiologically induced PGC-1α protein level and activity. Our findings link NQO1, a cellular redox sensor, to the metabolite-sensing network that tunes PGC-1α expression and activity in regulating energy metabolism.

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