From the ‡Molecular Biology I, Centre for Medical Biotechnology, Faculty of Biology, University of Duisburg-Essen, 45141 Essen, Germany.
§Department of Biology, Institute of Molecular Systems Biology, ETH Zurich, 8093 Zurich, Switzerland.
Mol Cell Proteomics. 2018 Jul;17(7):1295-1307. doi: 10.1074/mcp.RA117.000471. Epub 2018 Mar 29.
The ubiquitin-directed AAA-ATPase VCP/p97 facilitates degradation of damaged or misfolded proteins in diverse cellular stress response pathways. Resolving the complexity of its interactions with partner and substrate proteins and understanding its links to stress signaling is therefore a major challenge. Here, we used affinity-purification SWATH mass spectrometry (AP-SWATH) to identify proteins that specifically interact with the substrate-trapping mutant, p97-E578Q. AP-SWATH identified differential interactions over a large detection range from abundant p97 cofactors to pathway-specific partners and individual ligases such as RNF185 and MUL1 that were trapped in p97-E578Q complexes. In addition, we identified various substrate proteins and candidates including the PP1 regulator CReP/PPP1R15B that dephosphorylates eIF2α and thus counteracts attenuation of translation by stress-kinases. We provide evidence that p97 with its Ufd1-Npl4 adapter ensures rapid constitutive turnover and balanced levels of CReP in unperturbed cells. Moreover, we show that p97-mediated degradation, together with a reduction in CReP synthesis, is essential for timely stress-induced reduction of CReP levels and, consequently, for robust eIF2α phosphorylation to enforce the stress response. Thus, our results demonstrate that p97 not only facilitates bulk degradation of misfolded proteins upon stress, but also directly modulates the integrated stress response at the level of signaling.
泛素定向 AAA-ATP 酶 VCP/p97 有助于在多种细胞应激反应途径中降解受损或错误折叠的蛋白质。因此,解析其与伴侣和底物蛋白相互作用的复杂性并理解其与应激信号的联系是一个主要的挑战。在这里,我们使用亲和纯化 SWATH 质谱法 (AP-SWATH) 来鉴定与底物捕获突变体 p97-E578Q 特异性相互作用的蛋白质。AP-SWATH 在从丰富的 p97 共因子到特定途径的伴侣和单个连接酶(如 RNF185 和 MUL1)的大检测范围内鉴定出差异相互作用,这些连接酶被捕获在 p97-E578Q 复合物中。此外,我们鉴定了各种底物蛋白和候选蛋白,包括 PP1 调节因子 CReP/PPP1R15B,它使 eIF2α去磷酸化,从而抵消应激激酶对翻译的衰减。我们提供的证据表明,p97 与其 Ufd1-Npl4 接头一起确保了 CReP 在未受干扰的细胞中快速组成性周转和平衡水平。此外,我们表明 p97 介导的降解以及 CReP 合成的减少对于应激诱导的 CReP 水平的及时降低以及随后的 eIF2α 磷酸化至关重要,以加强应激反应。因此,我们的结果表明,p97 不仅在应激时促进错误折叠蛋白的大量降解,而且还直接调节信号转导水平的综合应激反应。