A central role for regulated protein stability in the control of TFE3 and MITF by nutrients

营养物质对 TFE3 和 MITF 的控制中,调节蛋白质稳定性的核心作用

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作者:Christopher Nardone, Brad A Palanski, Daniel C Scott, Richard T Timms, Karl W Barber, Xin Gu, Aoyue Mao, Yumei Leng, Emma V Watson, Brenda A Schulman, Philip A Cole, Stephen J Elledge

Abstract

The TFE3 and MITF master transcription factors maintain metabolic homeostasis by regulating lysosomal, melanocytic, and autophagy genes. Previous studies posited that their cytosolic retention by 14-3-3, mediated by the Rag GTPases-mTORC1, was key for suppressing transcriptional activity in the presence of nutrients. Here, we demonstrate using mammalian cells that regulated protein stability plays a fundamental role in their control. Amino acids promote the recruitment of TFE3 and MITF to the lysosomal surface via the Rag GTPases, activating an evolutionarily conserved phospho-degron and leading to ubiquitination by CUL1β-TrCP and degradation. Elucidation of the minimal functional degron revealed a conserved alpha-helix required for interaction with RagA, illuminating the molecular basis for a severe neurodevelopmental syndrome caused by missense mutations in TFE3 within the RagA-TFE3 interface. Additionally, the phospho-degron is recurrently lost in TFE3 genomic translocations that cause kidney cancer. Therefore, two divergent pathologies converge on the loss of protein stability regulation by nutrients.

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