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恶性疟原虫反应调节因子VemR被传感激酶CheA用于多个致病性相关靶点的磷酸化。

Pv. Response Regulator VemR Is Co-opted by the Sensor Kinase CheA for Phosphorylation of Multiple Pathogenicity-Related Targets.

作者信息

Cai Lulu, Ma Wenxiu, Zou Lifang, Xu Xiameng, Xu Zhengyin, Deng Chaoying, Qian Wei, Chen Xiaobin, Chen Gongyou

机构信息

State Key Laboratory of Microbial Metabolism, School of Agriculture and Biology, Shanghai Jiao Tong University, Shanghai, China.

State Key Laboratory of Plant Genomics, Institute of Microbiology, Chinese Academy of Sciences, Beijing, China.

出版信息

Front Microbiol. 2022 Jun 9;13:928551. doi: 10.3389/fmicb.2022.928551. eCollection 2022.

Abstract

Two-component systems (TCSs) (cognate sensor histidine kinase/response regulator pair, HK/RR) play a crucial role in bacterial adaptation, survival, and productive colonization. An atypical orphan single-domain RR VemR was characterized by the non-vascular pathogen pv. () is known to cause bacterial leaf streak (BLS) disease in rice. growth and pathogenicity in rice, motility, biosynthesis of extracellular polysaccharide (EPS), and the ability to trigger HR in non-host tobacco were severely compromised in the deletion mutant strain RΔ as compared to the wild-type strain RS105. Site-directed mutagenesis and phosphotransfer experiments revealed that the conserved aspartate (D) residue within the stand-alone phosphoacceptor receiver (REC) domain is essential for phosphorelay and the regulatory activity of VemR. Yeast two-hybrid (Y2H) and co-immunoprecipitation (co-IP) data identified CheA as the HK co-opting the RR VemR for phosphorylation. Affinity proteomics identified several downstream VemR-interacting proteins, such as 2-oxoglutarate dehydrogenase (OGDH), DNA-binding RR SirA, flagellar basal body P-ring formation protein FlgA, Type 4a pilus retraction ATPase PilT, stress-inducible sensor HK BaeS, septum site-determining protein MinD, cytoskeletal protein CcmA, and Type III and VI secretion system proteins HrpG and Hcp, respectively. Y2H and deletion mutant analyses corroborated that VemR interacted with OGDH, SirA, FlgA, and HrpG; thus, implicating multi-layered control of diverse cellular processes including carbon metabolism, motility, and pathogenicity in the rice. Physical interaction between VemR and HrpG suggested cross-talk interaction between CheA/VemR- and HpaS/HrpG-mediated signal transduction events orchestrating the gene expression.

摘要

双组分系统(TCSs)(同源传感器组氨酸激酶/反应调节因子对,HK/RR)在细菌适应、生存和有效定殖中起关键作用。一种非典型孤儿单结构域RR VemR由非维管束病原体pv.()所特有,已知其会在水稻中引发细菌性条斑病(BLS)。与野生型菌株RS105相比,缺失突变体菌株RΔ在水稻中的生长和致病性、运动性、胞外多糖(EPS)生物合成以及在非寄主烟草中引发过敏反应(HR)的能力均严重受损。定点诱变和磷酸转移实验表明,独立的磷酸受体接收(REC)结构域内保守的天冬氨酸(D)残基对于磷酸中继和VemR的调节活性至关重要。酵母双杂交(Y2H)和免疫共沉淀(co-IP)数据确定CheA为使RR VemR磷酸化的HK。亲和蛋白质组学鉴定出几种VemR下游相互作用蛋白,分别为2-氧代戊二酸脱氢酶(OGDH)、DNA结合RR SirA、鞭毛基体P环形成蛋白FlgA、4a型菌毛收缩ATP酶PilT、应激诱导传感器HK BaeS、隔膜位点决定蛋白MinD、细胞骨架蛋白CcmA以及III型和VI型分泌系统蛋白HrpG和Hcp。Y2H和缺失突变体分析证实VemR与OGDH、SirA、FlgA和HrpG相互作用;因此,这意味着对包括水稻中碳代谢、运动性和致病性在内的多种细胞过程进行多层控制。VemR与HrpG之间的物理相互作用表明,CheA/VemR-和HpaS/HrpG介导的信号转导事件之间存在串扰相互作用,从而协调基因表达。

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