VCP(一种重要的折叠酶)与去泛素酶之间的不同耦合模式

Lauren E Vostal, Noa E Dahan, Wenzhu Zhang, Matthew J Reynolds, Brian Chait, Tarun Mohan Kapoor
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引用次数: 0

摘要

蛋白稳态需要对各种蛋白质的降解和再循环进行调节,而蛋白稳态的错误与衰老、癌症和神经退行性疾病有关。特别是,从多蛋白复合物、细胞器和膜中回收蛋白质需要通过泛素化、重要的机械酶 VCP 的提取和展开,以及去泛素酶(DUBs)的泛素清除来启动,人类有大约 100 种泛素特异性蛋白酶。由于 VCP 的底物识别需要泛素化,因此从底物中去除泛素进行再循环必须经过提取和展开。目前还不清楚 VCP 和不同 DUBs 的活动是如何协调的,以实现蛋白质再循环或其他命运。在这里,我们采用了一种基于光化学的方法来分析活细胞中全蛋白质组特定结构域的 VCP 相互作用。我们识别了在 VCP 中央孔(ATP 依赖性底物转运的通道)的入口、出口或两个位点附近结合的 DUBs。从这组 DUBs 中,我们重点研究了细胞器组装和 DNA 修复所需的 VCPIP1,我们的化学蛋白质组学工作流程表明它与中心孔的入口和出口位点结合。我们确定了 VCP-VCPIP1 复合物的约 3 Å 冷冻电子显微镜结构,发现多达 3 个 VCPIP1 原型与 VCP 六聚体相互作用。VCPIP1 的 UBX-L 结构域以 "向下 "构象结合 VCP 的 N-结构域,与 VCP 的 ADP 结合态相连,而去泛素酶结构域则位于中央孔的出口位点,准备在底物展开后去除泛素。我们发现 VCP 能刺激 VCPIP1 的 DUB 活性,并使用诱变和单分子质量光度测定法来检验该结构模型。我们的数据表明,DUB 在不同的位点与 VCP 结合,并揭示了这两种酶的活性如何协调,以实现泛素化蛋白的特定下游结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Distinct modes of coupling between VCP, an essential unfoldase, and deubiquitinases
Errors in proteostasis, which requires regulated degradation and recycling of diverse proteins, are linked to aging, cancer and neurodegenerative disease. In particular, recycling proteins from multiprotein complexes, organelles and membranes is initiated by ubiquitylation, extraction and unfolding by the essential mechanoenzyme VCP, and ubiquitin removal by deubiquitinases (DUBs), a class of ~100 ubiquitin-specific proteases in humans. As VCP's substrate recognition requires ubiquitylation, the removal of ubiquitins from substrates for recycling must follow extraction and unfolding. How the activities of VCP and different DUBs are coordinated for protein recycling or other fates is unclear. Here, we employ a photochemistry-based approach to profile proteome-wide domain-specific VCP interactions in living cells. We identify DUBs that bind near the entry, exit, or both sites of VCP's central pore, the channel for ATP-dependent substrate translocation. From this set of DUBs, we focus on VCPIP1, required for organelle assembly and DNA repair, that our chemical proteomics workflow indicates binds the central pore's entry and exit sites. We determine a ~3Å cryo-EM structure of the VCP-VCPIP1 complex and find up to 3 VCPIP1 protomers interact with the VCP hexamer. VCPIP1's UBX-L domain binds VCP's N-domain in a 'down' conformation, linked to VCP's ADP-bound state, and the deubiquitinase domain is positioned at the central pore's exit site, poised to remove ubiquitin following substrate unfolding. We find that VCP stimulates VCPIP1's DUB activity and use mutagenesis and single-molecule mass photometry assays to test the structural model. Together, our data suggest that DUBs bind VCP at distinct sites and reveal how the two enzyme activities can be coordinated to achieve specific downstream outcomes for ubiquitylated proteins.
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