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首页> 外文期刊>Autophagy >AMPK-dependent phosphorylation of lipid droplet protein PLIN2 triggers its degradation by CMA
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AMPK-dependent phosphorylation of lipid droplet protein PLIN2 triggers its degradation by CMA

机译:脂滴蛋白PLIN2的AMPK依赖性磷酸化触发其被CMA降解

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摘要

Lipids stored in lipid droplets are hydrolyzed via either cytosolic lipases or a selective form of macroautophagy known as lipophagy. We recently demonstrated that chaperone-mediated autophagy (CMA) is required for the initiation of lipolysis by either of these independent lipolytic pathways. CMA selectively degrades the lipid droplet proteins perilipins (PLIN) 2 and 3 from the lipid droplet surface, thus, facilitating the recruitment of cytosolic lipases and autophagy effector proteins to the lipid droplets. PLIN2 phosphorylation was observed upon induction of lipolysis, but the phosphorylating kinase and the relation of this phosphorylation with CMA of PLIN2 remained unknown. Here, we report that phosphorylation of PLIN2 is dependent on AMPK and occurs after the interaction of PLIN2 with the CMA chaperone HSPA8/Hsc70. Our results highlight a role for posttranslational modifications in priming proteins to be amenable for degradation by CMA.
机译:存储在脂质小滴中的脂质通过胞质脂肪酶或称为脂肪吞噬作用的自噬的选择性形式被水解。我们最近证明,通过这些独立的脂解途径之一来进行脂解需要伴侣蛋白介导的自噬(CMA)。 CMA从脂质滴表面选择性降解脂质滴蛋白perilipins(PLIN)2和3,从而促进细胞溶脂酶和自噬效应蛋白向脂质滴的募集。诱导脂解后可观察到PLIN2磷酸化,但尚不清楚PLIN2的磷酸化激酶及其与CMA的关系。在这里,我们报道PLIN2的磷酸化取决于AMPK,并在PLIN2与CMA伴侣HSPA8 / Hsc70相互作用后发生。我们的结果凸显了翻译后修饰在引物蛋白中的作用,使其易于被CMA降解。

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