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Snf1/AMPK promotes the formation of Kog1/Raptor-bodies to increase the activation threshold of TORC1 in budding yeast

机译:Snf1 / AMPK促进Kog1 / Raptor抗体的形成从而提高发芽酵母中TORC1的激活阈值

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摘要

The target of rapamycin complex I (TORC1) regulates cell growth and metabolism in eukaryotes. Previous studies have shown that nitrogen and amino acid signals activate TORC1 via the small GTPases, Gtr1/2. However, little is known about the way that other nutrient signals are transmitted to TORC1. Here we report that glucose starvation triggers disassembly of TORC1, and movement of the key TORC1 component Kog1/Raptor to a single body near the edge of the vacuole. These events are driven by Snf1/AMPK-dependent phosphorylation of Kog1 at Ser 491/494 and two nearby prion-like motifs. Kog1-bodies then serve to increase the threshold for TORC1 activation in cells that have been starved for a significant period of time. Together, our data show that Kog1-bodies create hysteresis (memory) in the TORC1 pathway and help ensure that cells remain committed to a quiescent state under suboptimal conditions. We suggest that other protein bodies formed in starvation conditions have a similar function.>DOI:
机译:雷帕霉素复合物I(TORC1)的目标调节真核生物中的细胞生长和代谢。先前的研究表明,氮和氨基酸信号通过小的GTPases Gtr1 / 2激活TORC1。但是,对于其他营养素信号传输到TORC1的方式知之甚少。在这里,我们报告葡萄糖饥饿触发了TORC1的拆卸,以及关键TORC1组件Kog1 / Raptor向液泡边缘附近的单个身体移动。这些事件是由Serf 491/494处Kog1的Snf1 / AMPK依赖性磷酸化和附近两个病毒样基元驱动的。然后,Kog1抗体可增加已经饥饿相当长一段时间的细胞中TORC1激活的阈值。总之,我们的数据表明Kog1抗体在TORC1途径中产生滞后作用(记忆),并有助于确保细胞在次优条件下仍保持静止状态。我们建议饥饿状态下形成的其他蛋白质体也具有类似的功能。> DOI:

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