Zhang Jin, Fan Fei, Zhao Yanhe, Sun Lifang, Liu Yadan, Keegan Ronan M, Isupov Michail N, Wu Yunkun
State Key Laboratory of Structural Chemistry, Fujian Institute of Research on the Structure of Matter, Chinese Academy of Science, Fuzhou 350002, People's Republic of China.
Fujian Health College, Fuzhou 350101, People's Republic of China.
Acta Crystallogr F Struct Biol Commun. 2017 Mar 1;73(Pt 3):167-173. doi: 10.1107/S2053230X17001376. Epub 2017 Feb 28.
Helicobacter pylori, a Gram-negative bacterial pathogen prevalent in the human population, is the causative agent of severe gastric diseases. An H. pylori type IV secretion (T4S) system encoded by the cytotoxin-associated gene pathogenicity island (cagPAI) is responsible for communication with host cells. As a component of the cagPAI T4S system core complex, CagX plays an important role in virulence-protein translocation into the host cells. In this work, the crystal structure of the C-terminal domain of CagX (CagXct), which is a homologue of the VirB9 protein from the VirB/D4 T4S system, is presented. CagXct is only the second three-dimensional structure to be elucidated of a VirB9-like protein. Another homologue, TraO, which is encoded on the Escherichia coli conjugative plasmid pKM101, shares only 19% sequence identity with CagXct; however, there is a remarkable similarity in tertiary structure between these two β-sandwich protein domains. Most of the residues that are conserved between CagXct and TraO are located within the protein core and appear to be responsible for the preservation of this domain fold. The studies presented here will contribute to our understanding of different bacterial T4S systems.
幽门螺杆菌是一种在人群中普遍存在的革兰氏阴性细菌病原体,是严重胃部疾病的致病因子。由细胞毒素相关基因致病岛(cagPAI)编码的幽门螺杆菌IV型分泌(T4S)系统负责与宿主细胞进行通讯。作为cagPAI T4S系统核心复合物的一个组成部分,CagX在将毒力蛋白转运到宿主细胞中发挥着重要作用。在这项工作中,展示了CagX C末端结构域(CagXct)的晶体结构,它是VirB/D4 T4S系统中VirB9蛋白的同源物。CagXct是第二个被阐明三维结构的类VirB9蛋白。另一个同源物TraO,由大肠杆菌接合质粒pKM101编码,与CagXct的序列同一性仅为19%;然而,这两个β-折叠蛋白结构域在三级结构上有显著相似性。CagXct和TraO之间保守的大多数残基位于蛋白质核心内,似乎负责维持该结构域的折叠。本文所呈现的研究将有助于我们对不同细菌T4S系统的理解。