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TORC1 Organised in Inhibited Domains (TOROIDs) regulate TORC1 activity

机译:抑制域中组织的TORC1(TOROID)调节TORC1的活性

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摘要

The Target of Rapamycin (TOR) is a eukaryotic serine/threonine protein kinase that functions in two distinct complexes, TORC1 and TORC2, to regulate growth and metabolism,. GTPases, responding to signals generated by abiotic stressors, nutrients, and, in metazoans, growth factors, play an important, but poorly understood role in TORC1 regulation. Here, we report that, in budding yeast, glucose withdrawal, which leads to an acute loss of TORC1 kinase activity, triggers a similarly rapid Rag GTPase-dependent redistribution of TORC1 from being semi-uniform around the vacuolar membrane to a single, vacuole-associated cylindrical structure visible by super-resolution optical microscopy. 3D reconstructions of cryo-electron micrograph images of these purified cylinders demonstrate that TORC1 oligomerizes into a higher-level hollow helical assembly which we name a TOROID (TORC1 Organised in Inhibited Domain). Fitting of the recently described mammalian TORC1 structure into our helical map revealed that oligomerisation leads to steric occlusion of the active site. Guided by the implications from our reconstruction, we present a TOR1 allele that prevents both TOROID formation and TORC1 inactivation in response to glucose withdrawal demonstrating that oligomerisation is necessary for TORC1 inactivation. Our results reveal a novel mechanism by which Rag-GTPases regulate TORC1 activity and suggest that the reversible assembly/disassembly of higher-level structure may be a new paradigm for the regulation of protein kinases.
机译:雷帕霉素(TOR)的靶标是一种真核丝氨酸/苏氨酸蛋白激酶,在两种不同的复合物TORC1和TORC2中起作用,以调节生长和代谢 < / sup>。 GTPases对非生物应激源,养分以及后生动物中的生长因子产生的信号作出响应,在TORC1调控中起着重要的作用,但人们对其了解甚少。在这里,我们报道,在发芽的酵母中,葡萄糖戒断导致TORC1激酶活性急剧丧失 ,触发了类似快速的Rag GTPase依赖性的TORC1重新分布,从液泡周围半均匀膜通过超分辨率光学显微镜可见到单个与液泡相关的圆柱形结构。这些纯化圆柱体的冷冻电子显微照片图像的3D重建表明,TORC1寡聚为高水平的中空螺旋装配,我们将其命名为TOROID(在抑制域中组织的TORC1)。将最近描述的哺乳动物TORC1结构拟合到我们的螺旋图中,发现寡聚导致活性位点的空间闭塞。在我们重建的意义指导下,我们提出了一个TOR1等位基因,它既可以阻止TOROID的形成,又可以防止TORC1的失活,这是对葡萄糖戒断的反应,这表明低聚是TORC1失活所必需的。我们的研究结果揭示了Rag-GTPases调节TORC1活性的新机制,并表明较高水平结构的可逆组装/拆卸可能是蛋白激酶调节的新范例。

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