a Division of Biochemistry, Biophysics & Structural Biology, and Division of Cell & Developmental Biology, Department of Molecular and Cell Biology , University of California at Berkeley , Berkeley , CA , USA.
Cell Cycle. 2019 May;18(10):1084-1094. doi: 10.1080/15384101.2019.1616999. Epub 2019 May 15.
The evolutionarily conserved Target of Rapamycin (TOR) complex-2 (TORC2) is an essential regulator of plasma membrane homeostasis in budding yeast (). In this yeast, TORC2 phosphorylates and activates the effector protein kinase Ypk1 and its paralog Ypk2. These protein kinases, in turn, carry out all the crucial functions of TORC2 by phosphorylating and thereby controlling the activity of at least a dozen downstream substrates. A previously uncharacterized interplay between the Rab5 GTPases and TORC2 signaling was uncovered through analysis of a newly suspected Ypk1 target. Muk1, one of two guanine nucleotide exchange factors for the Rab5 GTPases, was found to be a physiologically relevant Ypk1 substrate; and, genetic analysis indicates that Ypk1-mediated phosphorylation activates the guanine nucleotide exchange activity of Muk1. Second, it was demonstrated both and that the GTP-bound state of the Rab5 GTPase Vps21/Ypt51 physically associates with TORC2 and acts as a direct positive effector required for full TORC2 activity. These interrelationships provide a self-reinforcing control circuit for sustained up-regulation of TORC2-Ypk1 signaling. In this overview, we summarize the experimental basis of these findings, their implications, and speculate as to the molecular basis for Rab5-mediated TORC2 activation.
进化保守的雷帕霉素靶蛋白(TOR)复合物-2(TORC2)是芽殖酵母()质膜稳态的重要调节因子。在这种酵母中,TORC2 磷酸化并激活效应蛋白激酶 Ypk1 和其同源物 Ypk2。这些蛋白激酶通过磷酸化并因此控制至少十几个下游底物的活性,从而执行 TORC2 的所有关键功能。通过对新怀疑的 Ypk1 靶标的分析,揭示了 Rab5 GTPases 和 TORC2 信号之间以前未被描述的相互作用。发现 Rab5 GTPases 的鸟嘌呤核苷酸交换因子之一 Muk1 是生理相关的 Ypk1 底物;遗传分析表明,Ypk1 介导的磷酸化激活了 Muk1 的鸟嘌呤核苷酸交换活性。其次,和都表明 Rab5 GTPase Vps21/Ypt51 的 GTP 结合状态与 TORC2 物理结合,并作为完全 TORC2 活性所需的直接正效应因子发挥作用。这些相互关系为 TORC2-Ypk1 信号的持续上调提供了自我强化的控制回路。在这篇综述中,我们总结了这些发现的实验基础、它们的意义,并推测了 Rab5 介导的 TORC2 激活的分子基础。