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Lhs1/GRP170 伴侣蛋白促进上皮钠离子通道的内质网相关降解。

The Lhs1/GRP170 chaperones facilitate the endoplasmic reticulum-associated degradation of the epithelial sodium channel.

机构信息

Department of Biological Sciences, University of Pittsburgh, Pittsburgh, Pennsylvania 15260, USA.

出版信息

J Biol Chem. 2013 Jun 21;288(25):18366-80. doi: 10.1074/jbc.M113.469882. Epub 2013 May 3.

Abstract

The epithelial sodium channel, ENaC, plays a critical role in maintaining salt and water homeostasis, and not surprisingly defects in ENaC function are associated with disease. Like many other membrane-spanning proteins, this trimeric protein complex folds and assembles inefficiently in the endoplasmic reticulum (ER), which results in a substantial percentage of the channel being targeted for ER-associated degradation (ERAD). Because the spectrum of factors that facilitates the degradation of ENaC is incomplete, we developed yeast expression systems for each ENaC subunit. We discovered that a conserved Hsp70-like chaperone, Lhs1, is required for maximal turnover of the ENaC α subunit. By expressing Lhs1 ATP binding mutants, we also found that the nucleotide exchange properties of this chaperone are dispensable for ENaC degradation. Consistent with the precipitation of an Lhs1-αENaC complex, Lhs1 holdase activity was instead most likely required to support the ERAD of αENaC. Moreover, a complex containing the mammalian Lhs1 homolog GRP170 and αENaC co-precipitated, and GRP170 also facilitated ENaC degradation in human, HEK293 cells, and in a Xenopus oocyte expression system. In both yeast and higher cell types, the effect of Lhs1 on the ERAD of αENaC was selective for the unglycosylated form of the protein. These data establish the first evidence that Lhs1/Grp170 chaperones can act as mediators of ERAD substrate selection.

摘要

上皮钠离子通道(ENaC)在维持盐和水的动态平衡中起着关键作用,毫不奇怪,ENaC 功能的缺陷与疾病有关。像许多其他跨膜蛋白一样,这种三聚体蛋白复合物在内质网(ER)中折叠和组装效率低下,导致大量通道被靶向 ER 相关降解(ERAD)。由于促进 ENaC 降解的因素谱不完整,我们为每个 ENaC 亚基开发了酵母表达系统。我们发现,一种保守的 Hsp70 样伴侣蛋白 Lhs1 对于 ENaC α 亚基的最大周转率是必需的。通过表达 Lhs1 ATP 结合突变体,我们还发现这种伴侣蛋白的核苷酸交换特性对于 ENaC 降解是可有可无的。与 Lhs1-αENaC 复合物的沉淀一致,Lhs1 持家酶活性可能更需要支持 αENaC 的 ERAD。此外,含有哺乳动物 Lhs1 同源物 GRP170 和 αENaC 的复合物也沉淀下来,并且 GRP170 还促进了人、HEK293 细胞和非洲爪蟾卵母细胞表达系统中 ENaC 的降解。在酵母和高等细胞类型中,Lhs1 对 αENaC 的 ERAD 的影响是针对蛋白质未糖基化形式的。这些数据首次证明 Lhs1/Grp170 伴侣蛋白可以作为 ERAD 底物选择的介导物。

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