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Novel Inducers of the Envelope Stress Response BaeSR in Salmonella Typhimurium: BaeR Is Critically Required for Tungstate Waste Disposal

机译:鼠伤寒沙门氏菌中信封应力响应BaeSR的新型诱导剂:钨酸盐废物处置至关重要地需要BaeR。

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摘要

The RpoE and CpxR regulated envelope stress responses are extremely important for SalmonellaTyphimurium to cause infection in a range of hosts. Until now the role for BaeSR in both the Salmonella Typhimurium response to stress and its contribution to infection have not been fully elucidated. Here we demonstrate stationary phase growth, iron and sodium tungstate as novel inducers of the BaeRregulon, with BaeR critically required for Salmonella resistance to sodium tungstate. We show that functional overlap between the resistance nodulation-cell division (RND) multidrug transporters, MdtA, AcrD and AcrB exists for the waste disposal of tungstate from the cell. We also point to a role for enterobactinsiderophores in the protection of enteric organisms from tungstate, akin to the scenario in nitrogen fixing bacteria. Surprisingly, BaeR is the first envelope stress response pathway investigated in S. Typhimurium that is not required for murine typhoid in either ityS or ityR mouse backgrounds. BaeR is therefore either required for survival in larger mammals such as pigs or calves, an avian host such as chickens, or survival out with the host altogether where Salmonella and related enterics must survive in soil and water.
机译:RpoE和CpxR调节的包膜应激反应对于鼠伤寒沙门氏菌引起多种宿主感染非常重要。到目前为止,BaeSR在鼠伤寒沙门氏菌对压力的反应及其对感染的影响中的作用尚未得到充分阐明。在这里,我们证明了固定相的生长,铁和钨酸钠是BaeRregulon的新型诱导物,而BaeR是沙门氏菌对钨酸钠耐性的关键。我们表明,耐药结节性细胞分裂(RND)多药转运蛋白MdtA,AcrD和AcrB之间存在功能重叠,用于从细胞中处置钨酸盐。我们还指出肠杆菌铁载体在保护肠有机体免受钨酸盐侵害方面的作用,类似于固氮细菌中的情形。令人惊讶的是,BaeR是在鼠伤寒沙门氏菌中研究的第一个包膜应激反应途径,在ityS或ityR小鼠背景下鼠伤寒都不需要。因此,BaeR是在较大的哺乳动物(例如猪或牛犊)中生存或在禽类宿主(例如鸡)中生存所必需的,或者与沙门氏菌和相关肠溶菌必须在土壤和水中生存的宿主一起生存。

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