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首页> 外文期刊>Cell death & disease. >TMEM166/EVA1A interacts with ATG16L1 and induces autophagosome formation and cell death
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TMEM166/EVA1A interacts with ATG16L1 and induces autophagosome formation and cell death

机译:TMEM166 / EVA1A与ATG16L1相互作用并诱导自噬体形成和细胞死亡

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摘要

The formation of the autophagosome is controlled by an orderly action of ATG proteins. However, how these proteins are recruited to autophagic membranes remain poorly clarified. In this study, we have provided a line of evidence confirming that EVA1A (eva-1 homolog A)/TMEM166 (transmembrane protein 166) is associated with autophagosomal membrane development. This notion is based on dotted EVA1A structures that colocalize with ZFYVE1, ATG9, LC3B, ATG16L1, ATG5, STX17, RAB7 and LAMP1, which represent different stages of the autophagic process. It is required for autophagosome formation as this phenotype was significantly decreased in EVA1A- silenced cells and Eva1a KO MEFs. EVA1A-induced autophagy is independent of the BECN1-PIK3C3 (phosphatidylinositol 3-kinase, catalytic subunit type 3) complex but requires ATG7 activity and the ATG12–ATG5/ATG16L1 complex. Here, we present a molecular mechanism by which EVA1A interacts with the WD repeats of ATG16L1 through its C-terminal and promotes ATG12–ATG5/ATG16L1 complex recruitment to the autophagic membrane and enhances the formation of the autophagosome. We also found that both autophagic and apoptotic mechanisms contributed to EVA1A-induced cell death while inhibition of autophagy and apoptosis attenuated EVA1A-induced cell death. Overall, these findings provide a comprehensive view to our understanding of the pathways involved in the role of EVA1A in autophagy and programmed cell death.
机译:自噬体的形成受ATG蛋白的有序作用控制。然而,如何将这些蛋白质募集到自噬膜上仍然不清楚。在这项研究中,我们提供了一条证据,证实EVA1A(eva-1同源物A)/ TMEM166(跨膜蛋白166)与自噬体膜发育有关。这个概念基于与ZFYVE1,ATG9,LC3B,ATG16L1,ATG5,STX17,RAB7和LAMP1共定位的点缀EVA1A结构,它们代表自噬过程的不同阶段。自噬体形成是必需的,因为在EVA1A沉默的细胞和Eva1a KO MEF中该表型显着降低。 EVA1A诱导的自噬独立于BECN1-PIK3C3(磷脂酰肌醇3-激酶,催化亚基3型)复合物,但需要ATG7活性和ATG12-ATG5 / ATG16L1复合物。在这里,我们介绍了一种分子机理,通过该分子机理,EVA1A通过其C末端与ATG16L1的WD重复序列相互作用,并促进ATG12–ATG5 / ATG16L1复合物募集到自噬膜并增强自噬体的形成。我们还发现自噬和凋亡机制都有助于EVA1A诱导的细胞死亡,而自噬和凋亡的抑制作用减弱了EVA1A诱导的细胞死亡。总体而言,这些发现为我们对EVA1A在自噬和程序性细胞死亡中的作用途径的理解提供了全面的了解。

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