Department of Biochemistry and Molecular Biology, Colorado State University, Fort Collins, United States.
Department of Chemistry and Biochemistry, University of Maryland, College Park, United States.
Elife. 2021 Nov 11;10:e72798. doi: 10.7554/eLife.72798.
UCH37, also known as UCHL5, is a highly conserved deubiquitinating enzyme (DUB) that associates with the 26S proteasome. Recently, it was reported that UCH37 activity is stimulated by branched ubiquitin (Ub) chain architectures. To understand how UCH37 achieves its unique debranching specificity, we performed biochemical and Nuclear Magnetic Resonance (NMR) structural analyses and found that UCH37 is activated by contacts with the hydrophobic patches of both distal Ubs that emanate from a branched Ub. In addition, RPN13, which recruits UCH37 to the proteasome, further enhances branched-chain specificity by restricting linear Ub chains from having access to the UCH37 active site. In cultured human cells under conditions of proteolytic stress, we show that substrate clearance by the proteasome is promoted by both binding and deubiquitination of branched polyubiquitin by UCH37. Proteasomes containing UCH37(C88A), which is catalytically inactive, aberrantly retain polyubiquitinated species as well as the RAD23B substrate shuttle factor, suggesting a defect in recycling of the proteasome for the next round of substrate processing. These findings provide a foundation to understand how proteasome degradation of substrates modified by a unique Ub chain architecture is aided by a DUB.
UCH37,也称为 UCHL5,是一种高度保守的去泛素化酶(DUB),与 26S 蛋白酶体相关。最近有报道称,UCH37 的活性受到分支泛素(Ub)链结构的刺激。为了了解 UCH37 如何实现其独特的去分支特异性,我们进行了生化和核磁共振(NMR)结构分析,发现 UCH37 通过与分支 Ub 发出的两个远端 Ub 的疏水区接触而被激活。此外,将 UCH37 招募到蛋白酶体的 RPN13 通过限制线性 Ub 链进入 UCH37 的活性位点,进一步增强了分支链特异性。在蛋白酶体应激条件下的培养的人类细胞中,我们表明,UCH37 通过与分支多泛素结合并使其去泛素化,促进蛋白酶体对底物的清除。含有 UCH37(C88A)的蛋白酶体,其催化活性丧失,异常保留多泛素化物质以及 RAD23B 底物穿梭因子,这表明蛋白酶体在下一轮底物加工中进行循环的能力存在缺陷。这些发现为理解蛋白酶体如何降解由独特 Ub 链结构修饰的底物提供了基础,这种降解是由 DUB 辅助的。