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Delipidation of mammalian Atg8-family proteins by each of the four ATG4 proteases

机译:通过四个ATG4蛋白酶中的每一个纯品ATG8-Family蛋白齐平

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摘要

During macroautophagy/autophagy, mammalian Atg8-family proteins undergo 2 proteolytic processing events. The first exposes a COOH-terminal glycine used in the conjugation of these proteins to lipids on the phagophore, the precursor to the autophagosome, whereas the second releases the lipid. The ATG4 family of proteases drives both cleavages, but how ATG4 proteins distinguish between soluble and lipid-anchored Atg8 proteins is not well understood. In a fully reconstituted delipidation assay, we establish that the physical anchoring of mammalian Atg8-family proteins in the membrane dramatically shifts the way ATG4 proteases recognize these substrates. Thus, while ATG4B is orders of magnitude faster at processing a soluble unprimed protein, all 4 ATG4 proteases can be activated to similar enzymatic activities on lipid-attached substrates. The recognition of lipidated but not soluble substrates is sensitive to a COOH-terminal LIR motif both in vitro and in cells. We suggest a model whereby ATG4B drives very fast priming of mammalian Atg8 proteins, whereas delipidation is inherently slow and regulated by all ATG4 homologs.
机译:在宏观摄噬/自噬期间,哺乳动物ATG8-Family蛋白经过2个蛋白水解处理事件。第一次暴露在这些蛋白质的缀合物中用于脂质的甘露体,前体对自噬核糖组共轭,而第二次释放脂质。 ATG4家族的蛋白酶驱动裂解,但ATG4蛋白的区分如何区分溶于溶于和脂质锚定的ATG8蛋白质不受欢迎。在一个完全重构的齐平测定中,我们确定膜中哺乳动物ATG8家族蛋白的物理锚固显着变换了ATG4蛋白酶识别这些基材的方式。因此,虽然ATG4B在加工可溶性未提生的蛋白质时较快,但是所有4个ATG4蛋白酶可以在脂质附着的基材上被活化至相似的酶活性。脂质但不溶于底物的识别对体外和细胞中的COOH-末端LIR基序敏感。我们建议atg4b驱动哺乳动物ATG8蛋白的快速启动的模型,而Delipidation本身是缓慢和由所有ATG4同源物调节的。

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