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首页> 外文期刊>Autophagy >Differing susceptibility to autophagic degradation of two LC3-binding proteins: SQSTM1/p62 and TBC1D25/OATL1
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Differing susceptibility to autophagic degradation of two LC3-binding proteins: SQSTM1/p62 and TBC1D25/OATL1

机译:两种LC3结合蛋白SQSTM1 / p62和TBC1D25 / OATL1对自噬降解的敏感性不同

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摘要

MAP1LC3/LC3 (a mammalian ortholog family of yeast Atg8) is a ubiquitin-like protein that is essential for autophagosome formation. LC3 is conjugated to phosphatidylethanolamine on phagophores and ends up distributed both inside and outside the autophagosome membrane. One of the well-known functions of LC3 is as a binding partner for receptor proteins, which target polyubiquitinated organelles and proteins to the phagophore through direct interaction with LC3 in selective autophagy, and their LC3-binding ability is essential for degradation of the polyubiquitinated substances. Although a number of LC3-binding proteins have been identified, it is unknown whether they are substrates of autophagy or how their interaction with LC3 is regulated. We previously showed that one LC3-binding protein, TBC1D25/OATL1, plays an inhibitory role in the maturation step of autophagosomes and that this function depends on its binding to LC3. Interestingly, TBC1D25 seems not to be a substrate of autophagy, despite being present on the phagophore. In this study we investigated the molecular basis for the escape of TBC1D25 from autophagic degradation by performing a chimeric analysis between TBC1D25 and SQSTM1/p62 (sequestosome 1), and the results showed that mutant TBC1D25 with an intact LC3-binding site can become an autophagic substrate when TBC1D25 is forcibly oligomerized. In addition, an ultrastructural analysis showed that TBC1D25 is mainly localized outside autophagosomes, whereas an oligomerized TBC1D25 mutant rather uniformly resides both inside and outside the autophagosomes. Our findings indicate that oligomerization is a key factor in the degradation of LC3-binding proteins and suggest that lack of oligomerization ability of TBC1D25 results in its asymmetric localization at the outer autophagosome membrane.
机译:MAP1LC3 / LC3(酵母Atg8的哺乳动物直系同源家族)是一种泛素样蛋白,对于自噬体形成至关重要。 LC3与吞噬细胞上的磷脂酰乙醇胺偶联,并最终分布在自噬体膜的内部和外部。 LC3的一项众所周知的功能是作为受体蛋白的结合伴侣,受体蛋白通过在选择性自噬中与LC3直接相互作用将多泛素化细胞器和蛋白质靶向吞噬细胞,并且它们的LC3结合能力对于降解多泛素化物质至关重要。尽管已鉴定出许多LC3结合蛋白,但它们是否是自噬的底物或如何调节其与LC3的相互作用尚不清楚。我们以前表明一种LC3结合蛋白,TBC1D25 / OATL1,在自噬小体的成熟步骤中起抑制作用,并且该功能取决于它与LC3的结合。有趣的是,尽管TBC1D25存在于噬菌体上,但它似乎不是自噬的底物。在这项研究中,我们通过在TBC1D25与SQSTM1 / p62(螯合体1)之间进行嵌合分析,研究了TBC1D25从自噬降解中逃逸的分子基础,结果表明,具有完整LC3结合位点的突变TBC1D25可以成为自噬的。将TBC1D25强行寡聚时会产生底物。此外,超微结构分析表明,TBC1D25主要位于自噬体的外部,而寡聚的TBC1D25突变体则相当均匀地位于自噬体的内部和外部。我们的发现表明,寡聚化是LC3结合蛋白降解的关键因素,并提示TBC1D25缺乏寡聚能力会导致其在自噬外膜的不对称定位。

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