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Alkaline phosphatase as a reporter of sigma(S) levels and rpoS polymorphisms in different E. coli strains.

机译:碱性磷酸酶作为不同大肠杆菌菌株中sigma(S)水平和rpoS多态性的报告基因。

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摘要

sigma(S) is responsible for the transcriptional regulation of genes related to protection against stresses and bacterial survival and it accumulates in the cell under conditions of stress, such as nutrient limitation. An increase in the levels of sigma(S) causes a reduction in the expression of genes that are transcribed by RNA polymerase associated with the principal sigma factor, sigma(70). phoA, that encodes alkaline phosphatase (AP) is expressed under phosphate shortage conditions, and is also repressed by sigma(S). Here we show that in a Pi-limited chemostat, accumulation of rpoS mutations is proportional to the intrinsic level of sigma(S) in the cells. Acquisition of mutations in rpoS relieves repression of the PHO genes. We also devised a non-destructive method based on the rpoS effect on AP that differentiates between rpoS (+) and rpoS mutants, as well as between high and low-sigma(S) producers. Using this method, we provide evidence that sigma(S) contributes to the repression of AP under conditions of Pi excess and that AP variation among different strains is at least partly due to intrinsic variation in sigma(S) levels. Consequently, a simple and non-destructive AP assay can be employed to differentiate between strains expressing different levels of sigma(S) on agar plates.
机译:sigma(S)负责与压力和细菌存活相关的保护相关基因的转录调控,并且在压力(例如营养限制)条件下在细胞中积累。 σ(S)水平的升高会导致与主要sigma因子sigma(70)相关的RNA聚合酶转录的基因表达降低。编码碱性磷酸酶(AP)的phoA在磷酸盐短缺的条件下表达,并且也被sigma(S)抑制。在这里,我们显示在有限的Pi恒化器中,rpoS突变的积累与细胞中sigma(S)的固有水平成正比。 rpoS中突变的获得减轻了PHO基因的抑制。我们还基于rpoS对AP的影响设计了一种非破坏性方法,该方法可以区分rpoS(+)和rpoS突变体,以及高和低sigma(S)生产者之间。使用这种方法,我们提供的证据表明,在Pi过量的条件下,sigma(S)有助于抑制AP,并且不同菌株之间的AP变化至少部分归因于sigma(S)水平的内在变化。因此,可以采用简单且无损的AP分析方法来区分琼脂平板上表达不同水平的sigma(S)的菌株。

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