肠沙门氏菌
微生物学
致病岛
细胞生物学
沙门氏菌
分泌物
毒力
生物
调节器
发酵
炎症
细菌
效应器
信号转导
三型分泌系统
促炎细胞因子
寄主(生物学)
发病机制
免疫系统
功能(生物学)
化学
大肠杆菌
细胞因子
基因
金黄色葡萄球菌
细菌生长
酶
殖民地化
肠粘膜
肠上皮
肠杆菌科
转化生长因子
作者
Hongmin Sun,Shuai Ma,Chenbo Kang,Mengjie Zhao,Jingnan Chen,Houliang Guo,Yiming Wang,Luoqing Feng,Lingyan Jiang,Bin Yang
标识
DOI:10.1073/pnas.2608715123
摘要
Salmonella enterica serovar Typhimurium ( S Tm) infection triggers robust intestinal inflammatory responses during host colonization. Although host inflammatory responses typically function as defense mechanisms, S Tm subverts these processes by co-opting inflammation-derived metabolites to increase both bacterial proliferation and intestinal colonization. Here, we demonstrate that S Tm-induced intestinal inflammation results in the significant accumulation of luminal citrate, which plays dual roles in S Tm pathogenesis, serving as both an anaerobic fermentation substrate to support bacterial growth and a virulence-activating signaling molecule. Mechanistically, the CitAB two-component system detects elevated citrate concentrations in the inflamed intestine, initiating the transcriptional activation of citrate fermentation genes to facilitate S Tm luminal proliferation. Moreover, CitAB-mediated citrate sensing directly upregulates hilD , which encodes the master regulator of Salmonella Pathogenicity Island 1, thereby enhancing type III secretion system-dependent epithelial invasion. Genetic disruption of either citrate anaerobic fermentation pathway or citrate-mediated virulence-regulating pathway severely compromises both intestinal colonization and invasive capacity of S Tm. These findings underscore citrate-responsive pathways as promising therapeutic targets for simultaneously disrupting S Tm metabolic adaptability and virulence.
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