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Eliminating a Set of Four Penicillin Binding Proteins Triggers the Rcs Phosphorelay and Cpx Stress Responses in Escherichia coli

机译:消除一组四种青霉素结合蛋白可触发大肠杆菌中的Rcs磷酸化和Cpx应激反应

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摘要

Penicillin binding proteins (PBPs) are responsible for synthesizing and modifying the bacterial cell wall, and in Escherichia coli the loss of several nonessential low-molecular-weight PBPs gives rise to abnormalities in cell shape and division. To determine whether these proteins help connect the flagellar basal body to the peptidoglycan wall, we surveyed a set of PBP mutants and found that motility in an agar migration assay was compromised by the simultaneous absence of four enzymes: PBP4, PBP5, PBP7, and AmpH. A wild-type copy of any one of these restored migration, and complementation depended on the integrity of the PBP active-site serine. However, the migration defect was caused by the absence of flagella instead of improper flagellar assembly. Migration was restored if the flhDC genes were overexpressed or if the rcsB or cpxR genes were deleted. Thus, migration was inhibited because the Rcs and Cpx stress response systems were induced in the absence of these four specific PBPs. Furthermore, in this situation Rcs induction depended on the presence of CpxR. The results imply that small changes in peptidoglycan structure are sufficient to activate these stress responses, suggesting that a specific cell wall fragment may be the signal being sensed. The fact that four PBPs must be inactivated may explain why large perturbations to the envelope are required to induce stress responses.
机译:青霉素结合蛋白(PBP)负责合成和修饰细菌细胞壁,在大肠杆菌中,几种不必要的低分子量PBP的丢失导致细胞形状和分裂异常。为了确定这些蛋白质是否有助于将鞭毛基体与肽聚糖壁相连,我们调查了一组PBP突变体,发现琼脂迁移试验中的运动性由于同时缺乏四种酶(PBP4,PBP5,PBP7和AmpH)而受到损害。 。这些恢复中的任何一个的野生型拷贝都恢复了迁移和互补,取决于PBP活性位点丝氨酸的完整性。然而,迁移缺陷是由鞭毛的缺乏而不是鞭毛的不正确组装引起的。如果flhDC基因过表达或rcsB或cpxR基因缺失,则迁移得以恢复。因此,抑制了迁移,因为在没有这四个特异性PBP的情况下诱导了Rcs和Cpx应激反应系统。此外,在这种情况下,Rcs的诱导取决于CpxR的存在。结果表明,肽聚糖结构的微小变化足以激活这些应激反应,表明特定的细胞壁片段可能是被感测的信号。必须使四个PBP失活的事实可以解释为什么需要对包膜进行大扰动才能引起应力响应。

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