Department of Molecular Microbiology & Immunology, Oregon Health & Science University, Portland, OR, USA.
EMBO J. 2023 Sep 18;42(18):e114318. doi: 10.15252/embj.2023114318. Epub 2023 Aug 9.
Regulation through post-translational ubiquitin signaling underlies a large portion of eukaryotic biology. This has not gone unnoticed by invading pathogens, many of which have evolved mechanisms to manipulate or subvert the host ubiquitin system. Bacteria are particularly adept at this and rely heavily upon ubiquitin-targeted virulence factors for invasion and replication. Despite lacking a conventional ubiquitin system of their own, many bacterial ubiquitin regulators loosely follow the structural and mechanistic rules established by eukaryotic ubiquitin machinery. Others completely break these rules and have evolved novel structural folds, exhibit distinct mechanisms of regulation, or catalyze foreign ubiquitin modifications. Studying these interactions can not only reveal important aspects of bacterial pathogenesis but also shed light on unexplored areas of ubiquitin signaling and regulation. In this review, we discuss the methods by which bacteria manipulate host ubiquitin and highlight aspects that follow or break the rules of ubiquitination.
翻译通过翻译后泛素信号通路调控,构成了真核生物生物学的很大一部分。这一点并没有被入侵病原体忽视,其中许多病原体已经进化出操纵或颠覆宿主泛素系统的机制。细菌在这方面尤其擅长,并且严重依赖泛素靶向毒力因子进行入侵和复制。尽管它们本身缺乏传统的泛素系统,但许多细菌泛素调节剂仍大致遵循真核泛素机制建立的结构和机制规则。其他的则完全打破这些规则,并进化出新颖的结构折叠,表现出不同的调控机制,或催化外来泛素修饰。研究这些相互作用不仅可以揭示细菌发病机制的重要方面,还可以阐明泛素信号通路和调控的未知领域。在这篇综述中,我们讨论了细菌操纵宿主泛素的方法,并强调了遵循或打破泛素化规则的方面。