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Role of the Salmonella enterica serovar Typhi Fur regulator and small RNAs RfrA and RfrB in iron homeostasis and interaction with host cells

机译:沙门氏菌Serovar Typhi毛皮调节剂和小RNAS RFRA和RFRB在铁稳态和宿主细胞的相互作用的作用

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Iron is an essential element but can be toxic at high concentrations. Therefore, its acquisition and storage require tight control. Salmonella encodes the global regulator Fur (ferric uptake regulator) and the small regulatory non-coding RNAs (sRNAs) RfrA and RfrB, homologues of RyhB. The role of these iron homeostasis regulators was investigated in Salmonella enterica serovar Typhi (S. Typhi). Strains containing either single or combined deletions of these regulators were obtained. The mutants were tested for growth in low and high iron conditions, resistance to oxidative stress, expression and production of siderophores, and during interaction with host cells. The fur mutant showed a growth defect and was sensitive to hydrogen peroxide. The expression of the sRNAs was responsible for these defects. Siderophore expression by S. Typhi and both sRNAs were regulated by iron and by Fur. Fur contributed to invasion of epithelial cells, and was shown for the first time to play a role in phagocytosis and intracellular survival of S. Typhi in human macrophages. The sRNAs RfrA and RfrB were not required for interaction with epithelial cells, but both sRNAs were important for optimal intracellular replication in macrophages. In S. Typhi, Fur is a repressor of both sRNAs, and loss of either RfrA or RfrB resulted in distinct phenotypes, suggesting a non-redundant role for these regulatory RNAs.
机译:铁是一个必不可少的元素,但可以在高浓度下有毒。因此,其采集和存储需要紧密控制。 Salmonella编码全球稳压器毛皮(Furric摄取调节器)和小型监管非编码RNA(SRNA)RFRA和RFRB,RYHB的同源物。在沙门氏菌Serovar Typhi(S. Typhi)中研究了这些铁袜调节剂的作用。得到含有这些调节剂的单一或组合缺失的菌株。测试突变体在低和高铁条件下进行生长,抗氧化应激,表达和生产的氧化剂,以及在与宿主细胞的相互作用期间。毛皮突变体显示出生长缺陷并对过氧化氢敏感。 SRNA的表达对这些缺陷负责。 S. Typhi和两个SRNA的Sirecleophore表达被铁和毛皮调节。毛皮有助于入侵上皮细胞,并首次显示在人巨噬细胞中发挥吞噬作用和细胞内存活的作用。与上皮细胞相互作用不需要SRNA RFRA和RFRB,但SRNA均对于巨噬细胞的最佳细胞内复制非常重要。在S. Typhi中,毛皮是SRNA的阻遏物,并且RFRA或RFRB的丧失导致了明显的表型,表明这些调节RNA的非冗余作用。

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