Shearer Robert F, Typas Dimitris, Coscia Fabian, Schovsbo Sofie, Kruse Thomas, Mund Andreas, Mailand Niels
Protein Signaling Program, Novo Nordisk Foundation Center for Protein Research, University of Copenhagen, Copenhagen, Denmark.
Proteomics Program, Novo Nordisk Foundation Center for Protein Research, University of Copenhagen, Copenhagen, Denmark.
EMBO J. 2022 May 2;41(9):e110145. doi: 10.15252/embj.2021110145. Epub 2022 Mar 29.
Conjugation of ubiquitin (Ub) to numerous substrate proteins regulates virtually all cellular processes. Eight distinct ubiquitin polymer linkages specifying different functional outcomes are generated in cells. However, the roles of some atypical poly-ubiquitin topologies, in particular linkages via lysine 27 (K27), remain poorly understood due to a lack of tools for their specific detection and manipulation. Here, we adapted a cell-based ubiquitin replacement strategy to enable selective and conditional abrogation of K27-linked ubiquitylation, revealing that this ubiquitin linkage type is essential for proliferation of human cells. We demonstrate that K27-linked ubiquitylation is predominantly a nuclear modification whose ablation deregulates nuclear ubiquitylation dynamics and impairs cell cycle progression in an epistatic manner with inactivation of the ATPase p97/VCP. Moreover, we show that a p97-proteasome pathway model substrate (Ub(G76V)-GFP) is directly modified by K27-linked ubiquitylation, and that disabling the formation of K27-linked ubiquitin signals or blocking their decoding via overexpression of the K27 linkage-specific binder UCHL3 impedes Ub(G76V)-GFP turnover at the level of p97 function. Our findings suggest a critical role of K27-linked ubiquitylation in supporting cell fitness by facilitating p97-dependent processing of ubiquitylated nuclear proteins.
泛素(Ub)与众多底物蛋白的缀合几乎调节着所有细胞过程。细胞中会产生八种不同的泛素聚合物连接方式,它们具有不同的功能结果。然而,由于缺乏特异性检测和操纵某些非典型多聚泛素拓扑结构的工具,尤其是通过赖氨酸27(K27)形成的连接方式,其作用仍知之甚少。在此,我们采用了一种基于细胞的泛素替换策略,以实现对K27连接的泛素化进行选择性和条件性消除,结果表明这种泛素连接类型对人类细胞的增殖至关重要。我们证明,K27连接的泛素化主要是一种核修饰,其缺失会失调核泛素化动力学,并以上调ATP酶p97/VCP失活的上位方式损害细胞周期进程。此外,我们表明,p97-蛋白酶体途径模型底物(Ub(G76V)-GFP)会被K27连接的泛素化直接修饰,并且通过过表达K27连接特异性结合蛋白UCHL3来抑制K27连接的泛素信号形成或阻断其解码,会在p97功能水平上阻碍Ub(G76V)-GFP的周转。我们的研究结果表明,K27连接的泛素化通过促进泛素化核蛋白的p97依赖性加工,在维持细胞适应性方面发挥关键作用。