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PLEKHM1:适应溶酶体环境的生存方式。

PLEKHM1: Adapting to life at the lysosome.

作者信息

McEwan David G, Dikic Ivan

机构信息

a Institute of Biochemistry II; Goethe University School of Medicine ; Frankfurt (Main) , Germany.

出版信息

Autophagy. 2015 Apr 3;11(4):720-2. doi: 10.1080/15548627.2015.1034419.

DOI:10.1080/15548627.2015.1034419
PMID:25905573
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4502740/
Abstract

The endosomal system and autophagy are 2 intertwined pathways that share a number of common protein factors as well as a final destination, the lysosome. Identification of adaptor platforms that can link both pathways are of particular importance, as they serve as common nodes that can coordinate the different trafficking arms of the endolysosomal system. Using a mass spectrometry approach to identify interaction partners of active (GTP-bound) RAB7, the late endosome/lysosome GTPase, and yeast 2-hybrid screening to identify LC3/GABARAP interaction partners we discovered the multivalent adaptor protein PLEKHM1. We discovered a highly conserved LC3-interaction region (LIR) between 2 PH domains of PLEKHM1 that mediated direct binding to all LC3/GABARAP family members. Subsequent mass spectrometry analysis of PLEKHM1 precipitated from cells revealed the HOPS (homotypic fusion and protein sorting) complex as a prominent interaction partner. Functionally, depletion of PLEKHM1, HOPS, or RAB7 results in decreased autophagosome-lysosome fusion. In Plekhm1 knockout (KO) mouse embryonic fibroblasts (MEFs) we observed increased lipidated LC3B, decreased colocalization between LC3B and LAMP1 under amino acid starvation conditions and decreased autolysosome formation. Finally, PLEKHM1 binding to LC3-positive autophagosomes was also essential for selective autophagy pathways, as shown by clearance of puromycin-aggregates, in a PLEKHM1-LIR-dependent manner. Overall, we have identified PLEKHM1 as an endolysosomal adaptor platform that acts as a central hub to integrate endocytic and autophagic pathways at the lysosome.

摘要

内体系统和自噬是两条相互交织的途径,它们共享许多共同的蛋白质因子以及最终目的地——溶酶体。识别能够连接这两条途径的衔接平台尤为重要,因为它们作为共同节点,可以协调内溶酶体系统的不同运输分支。我们采用质谱方法来识别活性(GTP结合)RAB7(晚期内体/溶酶体GTP酶)的相互作用伙伴,并通过酵母双杂交筛选来识别LC3/GABARAP相互作用伙伴,从而发现了多价衔接蛋白PLEKHM1。我们在PLEKHM1的两个PH结构域之间发现了一个高度保守的LC3相互作用区域(LIR),该区域介导了与所有LC3/GABARAP家族成员的直接结合。随后对从细胞中沉淀出的PLEKHM1进行质谱分析,结果显示同型融合与蛋白分选(HOPS)复合物是一个重要的相互作用伙伴。在功能上,PLEKHM1、HOPS或RAB7的缺失会导致自噬体-溶酶体融合减少。在Plekhm1基因敲除(KO)的小鼠胚胎成纤维细胞(MEF)中,我们观察到在氨基酸饥饿条件下,脂化LC3B增加,LC3B与LAMP1的共定位减少,自噬溶酶体形成减少。最后,如嘌呤霉素聚集体的清除所示,PLEKHM1与LC3阳性自噬体的结合对于选择性自噬途径也至关重要,且这种结合依赖于PLEKHM1的LIR。总体而言,我们已将PLEKHM1鉴定为一种内溶酶体衔接平台,它作为一个中心枢纽,在溶酶体处整合内吞和自噬途径。