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Plasma membrane proteins Slm1 and Slm2 mediate activation of the AGC kinase Ypk1 by TORC2 and sphingolipids in S. cerevisiae

机译:质膜蛋白Slm1和Slm2通过酿酒酵母中的TORC2和鞘脂介导AGC激酶Ypk1的激活。

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摘要

The PH domain-containing proteins Slm1 and Slm2 were originally identified as substrates of the rapamycin-insensitive TOR complex 2 (TORC2) and as mediators of signaling by the lipid second messenger phosphatidyl-inositol-4,5-bisphosphate (PI4,5P2) in budding yeast S. cerevisiae. More recently, these proteins have been identified as critical effectors that facilitate phosphorylation and activation of the AGC kinases Ypk1 and Ypk2 by TORC2.1 Here, we review the molecular basis for this regulation as well as place it within the context of recent findings that have revealed Slm1/2 and TORC2-dependent phosphorylation of Ypk1 is coupled to the biosynthesis of complex sphingolipids and to their levels within the plasma membrane (PM) as well as other forms of PM stress. Together, these studies reveal the existence of an intricate homeostatic feedback mechanism, whereby the activity of these signaling components is linked to the biosynthesis of PM lipids according to cellular need.
机译:含PH结构域的蛋白质Slm1和Slm2最初被确定为雷帕霉素不敏感的TOR复合物2(TORC2)的底物,并被脂类第二信使磷脂酰肌醇-4,5-双磷酸酯(PI4,5P2)介导。出芽的酿酒酵母。最近,这些蛋白质被认为是促进TORC2磷酸化和激活AGC激酶Ypk1和Ypk2的关键效应子。 1 在这里,我们回顾了这种调控的分子基础并将其置于最近的发现揭示了Ypk1的Slm1 / 2和TORC2依赖性磷酸化与复杂鞘脂的生物合成及其在质膜(PM)内的水平以及其他形式的PM应激有关。总之,这些研究揭示了复杂的稳态反馈机制的存在,从而根据细胞的需要,这些信号传导成分的活性与PM脂质的生物合成有关。

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