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SNX-1和RME-8对抗HGRS-1/ESCRT-0降解微结构域在内体上的组装。

SNX-1 and RME-8 oppose the assembly of HGRS-1/ESCRT-0 degradative microdomains on endosomes.

作者信息

Norris Anne, Tammineni Prasad, Wang Simon, Gerdes Julianne, Murr Alexandra, Kwan Kelvin Y, Cai Qian, Grant Barth D

机构信息

Department of Molecular Biology and Biochemistry, Rutgers University, Piscataway, NJ 08854.

Department of Cell Biology and Neuroscience, Rutgers University, Piscataway, NJ 08854.

出版信息

Proc Natl Acad Sci U S A. 2017 Jan 17;114(3):E307-E316. doi: 10.1073/pnas.1612730114. Epub 2017 Jan 4.

Abstract

After endocytosis, transmembrane cargo reaches endosomes, where it encounters complexes dedicated to opposing functions: recycling and degradation. Microdomains containing endosomal sorting complexes required for transport (ESCRT)-0 component Hrs [hepatocyte growth factor-regulated tyrosine kinase substrate (HGRS-1) in Caenorhabditis elegans] mediate cargo degradation, concentrating ubiquitinated cargo and organizing the activities of ESCRT. At the same time, retromer associated sorting nexin one (SNX-1) and its binding partner, J-domain protein RME-8, sort cargo away from degradation, promoting cargo recycling to the Golgi. Thus, we hypothesized that there could be important regulatory interactions between retromer and ESCRT that balance degradative and recycling functions. Taking advantage of the naturally large endosomes of the C. elegans coelomocyte, we visualized complementary ESCRT-0 and RME-8/SNX-1 microdomains in vivo and assayed the ability of retromer and ESCRT microdomains to regulate one another. We found in snx-1(0) and rme-8(ts) mutants increased endosomal coverage and intensity of HGRS-1-labeled microdomains, as well as increased total levels of HGRS-1 bound to membranes. These effects are specific to SNX-1 and RME-8, as loss of other retromer components SNX-3 and vacuolar protein sorting-associated protein 35 (VPS-35) did not affect HGRS-1 microdomains. Additionally, knockdown of hgrs-1 had little to no effect on SNX-1 and RME-8 microdomains, suggesting directionality to the interaction. Separation of the functionally distinct ESCRT-0 and SNX-1/RME-8 microdomains was also compromised in the absence of RME-8 and SNX-1, a phenomenon we observed to be conserved, as depletion of Snx1 and Snx2 in HeLa cells also led to greater overlap of Rme-8 and Hrs on endosomes.

摘要

内吞作用后,跨膜货物到达内体,在那里它会遇到负责相反功能的复合物:回收和降解。含有运输所需内体分选复合物(ESCRT)-0组分Hrs(秀丽隐杆线虫中的肝细胞生长因子调节的酪氨酸激酶底物(HGRS-1))的微结构域介导货物降解,聚集泛素化货物并组织ESCRT的活性。同时,逆转录复合物相关分选连接蛋白1(SNX-1)及其结合伴侣J结构域蛋白RME-8将货物从降解中分离出来,促进货物循环回到高尔基体。因此,我们推测逆转录复合物和ESCRT之间可能存在重要的调节相互作用,以平衡降解和回收功能。利用秀丽隐杆线虫体腔细胞天然存在的大内体,我们在体内可视化了互补的ESCRT-0和RME-8/SNX-1微结构域,并检测了逆转录复合物和ESCRT微结构域相互调节的能力。我们发现在snx-1(0)和rme-8(ts)突变体中,HGRS-1标记的微结构域的内体覆盖范围和强度增加,以及与膜结合的HGRS-1的总水平增加。这些效应是SNX-1和RME-8特有的,因为其他逆转录复合物组分SNX-3和液泡蛋白分选相关蛋白35(VPS-35)的缺失不影响HGRS-1微结构域。此外,敲低hgrs-1对SNX-1和RME-8微结构域几乎没有影响,表明这种相互作用具有方向性。在没有RME-8和SNX-1的情况下,功能不同的ESCRT-0和SNX-1/RME-8微结构域的分离也受到损害,我们观察到这种现象是保守的,因为在HeLa细胞中耗尽Snx1和Snx2也导致Rme-8和Hrs在内体上的更大重叠。

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