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Atg2 mediates direct lipid transfer between membranes for autophagosome formation

机译:ATG2介导在膜之间进行直接脂质转移以进行自噬形成

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A key event in autophagy is autophagosome formation, whereby the newly synthesized isolation membrane (IM) expands to form a complete autophagosome using endomembrane-derived lipids. Atg2 physically links the edge of the expanding IM with the endoplasmic reticulum (ER), a role that is essential for autophagosome formation. However, the molecular function of Atg2 during ER-IM contact remains unclear, as does the mechanism of lipid delivery to the IM. Here we show that the conserved amino-terminal region of Schizosaccharomyces pombe Atg2 includes a lipid-transfer-protein-like hydrophobic cavity that accommodates phospholipid acyl chains. Atg2 bridges highly curved liposomes, thereby facilitating efficient phospholipid transfer in vitro, a function that is inhibited by mutations that impair autophagosome formation in vivo. These results suggest that Atg2 acts as a lipid-transfer protein that supplies phospholipids for autophagosome formation.
机译:自噬中的一个关键事件是自噬形成,由此新合成的隔离膜(IM)膨胀以使用EndoMembrane衍生的脂质形成完全自噬体。 ATG2物理地将扩展IM的边缘与内质网(ER)相连,这是对自噬体形成至关重要的作用。 然而,ER-IM接触期间ATG2的分子功能仍然不清楚,脂质递送到IM的机制。 在这里,我们表明Schizosaccharomyces Pombe Atg2的保守氨基末端区域包括脂质转移蛋白质的疏水腔,其适应磷脂酰基链。 ATG2桥接高度弯曲的脂质体,从而促进体外有效的磷脂转移,该功能被损害自动体内形成的突变抑制。 这些结果表明,ATG2用作脂质转移蛋白,供应磷脂以用于自噬体形成。

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