伤寒
微生物学
沙门氏菌
伤寒沙门菌
分泌物
生物
抗菌剂
毒素
溶菌酶
细胞内
重组DNA
DNA损伤
氧化应激
沙门氏菌感染
细菌
病毒学
血清型
肠杆菌科
免疫学
细菌细胞结构
氧化磷酸化
肠沙门氏菌
细胞内寄生虫
细胞培养
作者
Salma Srour,F Brown,James W Sheffield,Mohamed ElGhazaly,Daniel O’Connor,Malick M. Gibani,Thomas C. Darton,Andrew J. Pollard,Mark O. Collins,Daniel Humphreys
标识
DOI:10.1038/s44321-025-00347-8
摘要
Salmonella Typhi secretes typhoid toxin that activates cellular DNA damage responses (DDR) during acute typhoid fever. Human infection challenge studies revealed that the toxin suppresses bacteraemia via unknown mechanisms. Using quantitative proteomic analysis on the plasma of bacteraemic participants, we demonstrate that wild-type toxigenic Salmonella induced secretion of lysozyme (LYZ) and apolipoprotein C3 (APOC3). Recombinant typhoid toxin or Salmonella infection recapitulated LYZ and APOC3 secretion in cultured cells, which involved ATM/ATR-dependent DDRs and confirmed observations in typhoid fever. LYZ caused spheroplast formation, inhibited the Salmonella type 3 secretion system, and intracellular infections. LYZ expression was regulated by p53 in a cell type-specific manner and driven by mitochondrial oxidative stress that caused nuclear DDRs and p53-mediated senescence responses. Addition of LYZ inhibited oxidative DNA damage and resulting senescence responses caused by typhoid toxin. Our findings may indicate that toxin-induced DDRs elicit antimicrobial responses, which suppress Salmonella bacteraemia during typhoid fever.
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