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Rapid depletion of ESCRT protein Vps4 underlies injury-induced autophagic impediment and Wallerian degeneration

机译:ESCRT蛋白Vps4的快速耗竭是损伤诱导的自噬障碍和Wallerian变性的基础

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摘要

Injured axons undergo a controlled, self-destruction process, known as Wallerian degeneration. However, the underlying mechanism remains elusive. Using the Drosophila wing nerve as a model, we identify the ESCRT component Vps4 as a previously unidentified essential gene for axonal integrity. Up-regulation of Vps4 remarkably delays degeneration of injured axons. We further reveal that Vps4 is required and sufficient to promote autophagic flux in axons and mammalian cells. Moreover, using both in vitro and in vivo models, we show that the function of Vps4 in maintaining axonal autophagy and suppressing Wallerian degeneration is conserved in mammals. Last, we uncover that Vps4 protein is rapidly depleted in injured mouse axons, which may underlie the injury-induced autophagic impediment and the subsequent axonal degeneration. Together, Vps4 and ESCRT may represent a novel signal transduction mechanism in axon injury and Wallerian degeneration.
机译:受伤的轴突经历了受控的自我毁灭过程,称为Wallerian变性。但是,基本机制仍然难以捉摸。使用果蝇翼神经作为模型,我们将ESCRT成分Vps4鉴定为轴突完整性的先前未鉴定的必需基因。 Vps4的上调显着延迟了受损轴突的变性。我们进一步揭示,Vps4是必需的,并且足以促进轴突和哺乳动物细胞中的自噬通量。此外,使用体外和体内模型,我们显示在哺乳动物中,Vps4在维持轴突自噬和抑制Wallerian变性中的功能是保守的。最后,我们发现受伤的小鼠轴突中Vps4蛋白迅速耗尽,这可能是损伤诱导的自噬障碍和随后的轴突变性的基础。 Vps4和ESCRT在一起可能代表轴突损伤和Wallerian变性中的新型信号转导机制。

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