Zhang Zhengrui, Das Chittaranjan
Department of Chemistry, Purdue University, West Lafayette, IN 47907, U.S.A.
Biochem Soc Trans. 2024 Dec 19;52(6):2525-2537. doi: 10.1042/BST20240896.
Ubiquitination and ADP-ribosylation are two types of post-translational modification (PTM) involved in regulating various cellular activities. In a striking example of direct interplay between ubiquitination and ADP-ribosylation, the bacterial pathogen Legionella pneumophila uses its SidE family of secreted effectors to catalyze an NAD+-dependent phosphoribosyl ubiquitination of host substrates in a process involving the intermediary formation of ADP-ribosylated ubiquitin (ADPR-Ub). This noncanonical ubiquitination pathway is finely regulated by multiple Legionella effectors to ensure a balanced host subjugation. Among the various regulatory effectors, the macrodomain effector MavL has been recently shown to reverse the Ub ADP-ribosylation and regenerate intact Ub. Here, we briefly outline emerging knowledge on ubiquitination and ADP-ribosylation and tap into cases of direct cross-talk between these two PTMs. The chemistry of ADP-ribose in the context of the PTM and the reversal mechanisms of ADP-ribosylation are then highlighted. Lastly, focusing on recent structural studies on the MavL-mediated reversal of Ub ADP-ribosylation, we strive to deduce distinct mechanisms regarding the catalysis and product release of this reaction.
泛素化和ADP核糖基化是两种参与调节各种细胞活动的翻译后修饰(PTM)类型。在泛素化和ADP核糖基化之间直接相互作用的一个显著例子中,细菌病原体嗜肺军团菌利用其分泌效应蛋白的SidE家族在一个涉及ADP核糖基化泛素(ADPR-Ub)中间形成的过程中催化宿主底物的NAD+依赖性磷酸核糖基泛素化。这种非经典的泛素化途径受到多种军团菌效应蛋白的精细调节,以确保对宿主的平衡征服。在各种调节效应蛋白中,最近发现宏结构域效应蛋白MavL能够逆转Ub ADP核糖基化并再生完整的Ub。在这里,我们简要概述了关于泛素化和ADP核糖基化的新知识,并探讨了这两种PTM之间直接相互作用的案例。然后重点介绍了PTM背景下ADP核糖的化学性质以及ADP核糖基化的逆转机制。最后,聚焦于最近关于MavL介导的Ub ADP核糖基化逆转的结构研究,我们努力推断该反应催化和产物释放的不同机制。