Department of Molecular and Cellular Biology, Institute for Frontier Medical Sciences, Kyoto University, Japan.
Department of Cell Sciences, Institute of Biomedical Sciences, Fukushima Medical University School of Medicine, Japan.
FEBS J. 2016 Jan;283(1):157-72. doi: 10.1111/febs.13564. Epub 2015 Nov 6.
Misfolded proteins in the endoplasmic reticulum (ER) are transported to the cytoplasm for degradation by the ubiquitin-proteasome system, a process otherwise known as ER-associated degradation (ERAD). Mammalian HRD1, an integral membrane ubiquitin ligase that ubiquitinates ERAD substrates, forms a large assembly in the ER membrane including SEL1L, a single-pass membrane protein, and additional components. The mechanism by which these molecules export misfolded proteins through the ER membrane remains unclear. Unlike Hrd3p, the homologue in Saccharomyces cerevisiae, human SEL1L is an unstable protein, which is restored by the association with HRD1. Here we report that the inherently unstable nature of the human SEL1L protein lies in its transmembrane domain, and that association of HRD1 with the SEL1L transmembrane domain restored its stability. On the other hand, we found that the SEL1L luminal domain escaped degradation, and inhibited the degradation of misfolded α1 -antitrypsin variant null Hong Kong by retaining the misfolded cargo in the ER. Overexpression of HRD1 inhibited the degradation of unfolded secretory cargo, which was restored by the interaction of HRD1 with the SEL1L transmembrane domain. Hence, we propose that SEL1L critically regulates HRD1-mediated disposal of misfolded cargo through its short membrane spanning stretch.
内质网(ER)中错误折叠的蛋白质通过泛素-蛋白酶体系统运输到细胞质中进行降解,这一过程也称为 ER 相关降解(ERAD)。哺乳动物 HRD1 是一种完整的膜泛素连接酶,可泛素化 ERAD 底物,它在内质网膜上形成一个大的组装体,包括 SEL1L,一种单次跨膜蛋白和其他成分。这些分子通过内质网膜输出错误折叠的蛋白质的机制仍不清楚。与酿酒酵母中的同源物 Hrd3p 不同,人 SEL1L 是一种不稳定的蛋白质,它与 HRD1 结合后得到恢复。在这里,我们报告说,人 SEL1L 蛋白的固有不稳定性在于其跨膜结构域,而 HRD1 与 SEL1L 跨膜结构域的结合恢复了其稳定性。另一方面,我们发现 SEL1L 腔结构域逃脱了降解,并通过将错误折叠的货物保留在 ER 中抑制了错误折叠的α1-抗胰蛋白酶变体 null Hong Kong 的降解。HRD1 的过表达抑制了未折叠分泌货物的降解,而 HRD1 与 SEL1L 跨膜结构域的相互作用恢复了其降解。因此,我们提出 SEL1L 通过其短的跨膜延伸段来严格调节 HRD1 介导的错误折叠货物的处置。