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RalB and the exocyst mediate the cellular starvation response by direct activation of autophagosome assembly

机译:RalB和囊泡通过直接激活自噬小体装配来介导细胞饥饿反应

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The study of macroautophagy in mammalian cells has described induction, vesicle nucleation, and membrane elongation complexes as key signaling intermediates driving autophagosome biogenesis. How these components are recruited to nascent autophagosomes is poorly understood, and although much is known about signaling mechanisms that restrain autophagy, the nature of positive inductive signals that can promote autophagy remain cryptic. We find that the Ras-like small G protein, RalB, is localized to nascent autophagosomes and is activated on nutrient deprivation. RalB and its effector Exo84 are required for nutrient starvation-induced autophagocytosis, and RalB activation is sufficient to promote autophagosome formation. Through direct binding to Exo84, RalB induces the assembly of catalytically active ULK1 and Beclin1-VPS34 complexes on the exocyst, which are required for isolation membrane formation and maturation. Thus, RalB signaling is a primary adaptive response to nutrient limitation that directly engages autophagocytosis through mobilization of the core vesicle nucleation machinery.
机译:在哺乳动物细胞中进行巨噬自噬的研究已将诱导,囊泡成核和膜延伸复合体描述为驱动自噬生物发生的关键信号中间物。人们对如何将这些成分募集到新生的自噬体了解甚少,尽管人们对抑制自噬的信号传导机制知之甚少,但可以促进自噬的正性诱导信号的性质仍然是个谜。我们发现,类似Ras的小G蛋白RalB定位于新生的自噬体,并在营养缺乏时被激活。 RalB及其效应物Exo84是营养饥饿诱导的自噬作用所必需的,RalB激活足以促进自噬体的形成。通过直接与Exo84结合,RalB诱导了囊外膜上催化活性的ULK1和Beclin1-VPS34复合物的组装,这是分离膜形成和成熟所必需的。因此,RalB信号是对营养限制的主要适应性反应,其通过核心囊泡成核机制的动员直接参与自噬作用。

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