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Differential impact of lipopolysaccharide defects caused by loss of RfaH in Yersinia pseudotuberculosis and Yersinia pestis

机译:RfaH丢失对假单胞菌和鼠疫耶尔森氏菌造成的脂多糖缺陷的差异影响

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摘要

RfaH enhances transcription of a select group of operons controlling bacterial surface features such as lipopolysaccharide (LPS). Previous studies have suggested that rfaH may be required for Yersinia pseudotuberculosis resistance to antimicrobial chemokines and survival during mouse infections. In order to further investigate the role of RfaH in LPS synthesis, resistance to host defense peptides, and virulence of Yersinia, we constructed ΔrfaH mutants of Y. pseudotuberculosis IP32953 and Y. pestis KIM6+. Loss of rfaH affected LPS synthesis in both species, resulting in a shorter core oligosaccharide. Susceptibility to polymyxin and the antimicrobial chemokine CCL28 was increased by loss of rfaH in Y. pseudotuberculosis but not in Y. pestis. Transcription of genes in the ddhD-wzz O-antigen gene cluster, but not core oligosaccharide genes, was reduced in ΔrfaH mutants. In addition, mutants with disruptions in specific ddhD-wzz O-antigen cluster genes produced LPS that was indistinguishable from the ΔrfaH mutant. This suggests that both Y. pseudotuberculosis and Y. pestis produce an oligosaccharide core with a single O-antigen unit attached in an RfaH-dependent fashion. Despite enhanced sensitivity to host defense peptides, the Y. pseudotuberculosis ΔrfaH strain was not attenuated in mice, suggesting that rfaH is not required for acute infection.
机译:RfaH增强控制细菌表面特征(如脂多糖(LPS))的一组操纵子的转录。先前的研究表明,rfaH可能是假结核耶尔森氏菌对微生物趋化因子的抗性和小鼠感染期间的生存所必需的。为了进一步研究RfaH在LPS合成,对宿主防御肽的抗性和耶尔森氏菌的毒力中的作用,我们构建了假结核耶尔森氏菌IP32953和鼠疫耶尔森氏菌KIM6 +的ΔrfaH突变体。 rfaH的丢失影响两个物种的LPS合成,导致核心寡糖较短。假结核耶尔森氏菌中rfaH的丢失增加了对多粘菌素和抗菌趋化因子CCL28的敏感性,而在鼠疫耶尔森氏菌中则没有。在ΔrfaH突变体中,ddhD-wzz O-抗原基因簇中的基因转录(而非核心寡糖基因)的转录减少。另外,在特定的 ddhD-wzz O-抗原簇基因中有破坏的突变体产生的LPS与Δ rfaH 突变体没有区别。这表明两个 Y 假结核 Y pestis 产生一个寡糖核心,该核心带有一个依赖于RfaH的方式连接的单个O抗原单元。尽管增强了对宿主防御肽 Y 的敏感性。小鼠的假结核Δ rfaH 株未减毒,表明急性感染不需要 rfaH

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