泛素
效应器
细胞生物学
塞普汀
生物
福氏志贺氏菌
泛素连接酶
激酶
磷酸化
胞质分裂
生物化学
基因
细胞
大肠杆菌
细胞分裂
作者
Wei Xian,Jiaqi Fu,Qinxin Zhang,Chuang Li,Yan‐Bo Zhao,Zhiheng Tang,Yi Yuan,Ying Wang,Yan Zhou,Peter S. Brzoic,Ning Zheng,Songying Ouyang,Zhao‐Qing Luo,Xiaoyun Liu
标识
DOI:10.1038/s41467-024-48205-4
摘要
Shigella flexneri is a Gram-negative bacterium causing severe bloody dysentery. Its pathogenesis is largely dictated by a plasmid-encoded type III secretion system (T3SS) and its associated effectors. Among these, the effector OspG has been shown to bind to the ubiquitin conjugation machinery (E2~Ub) to activate its kinase activity. However, the cellular targets of OspG remain elusive despite years of extensive efforts. Here we show by unbiased phosphoproteomics that a major target of OspG is CAND1, a regulatory protein controlling the assembly of cullin-RING ubiquitin ligases (CRLs). CAND1 phosphorylation weakens its interaction with cullins, which is expected to impact a large panel of CRL E3s. Indeed, global ubiquitome profiling reveals marked changes in the ubiquitination landscape when OspG is introduced. Notably, OspG promotes ubiquitination of a class of cytoskeletal proteins called septins, thereby inhibiting formation of cage-like structures encircling cytosolic bacteria. Overall, we demonstrate that pathogens have evolved an elaborate strategy to modulate host ubiquitin signaling to evade septin-cage entrapment.
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