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吲哚脉冲信号以类似记忆的方式调节大肠杆菌的细胞质 pH 值。

Indole Pulse Signalling Regulates the Cytoplasmic pH of E. coli in a Memory-Like Manner.

机构信息

Department of Genetics, University of Cambridge, Cambridge, CB2 3EH, UK.

MRC Laboratory of Molecular Biology, Cambridge, CB2 0QH, UK.

出版信息

Sci Rep. 2019 Mar 7;9(1):3868. doi: 10.1038/s41598-019-40560-3.

Abstract

Bacterial cells are critically dependent upon pH regulation. Here we demonstrate that indole plays a critical role in the regulation of the cytoplasmic pH of Escherichia coli. Indole is an aromatic molecule with diverse signalling roles. Two modes of indole signalling have been described: persistent and pulse signalling. The latter is illustrated by the brief but intense elevation of intracellular indole during stationary phase entry. We show that under conditions permitting indole production, cells maintain their cytoplasmic pH at 7.2. In contrast, under conditions where no indole is produced, the cytoplasmic pH is near 7.8. We demonstrate that pH regulation results from pulse, rather than persistent, indole signalling. Furthermore, we illustrate that the relevant property of indole in this context is its ability to conduct protons across the cytoplasmic membrane. Additionally, we show that the effect of the indole pulse that occurs normally during stationary phase entry in rich medium remains as a "memory" to maintain the cytoplasmic pH until entry into the next stationary phase. The indole-mediated reduction in cytoplasmic pH may explain why indole provides E. coli with a degree of protection against stresses, including some bactericidal antibiotics.

摘要

细菌细胞对 pH 值的调节至关重要。在这里,我们证明吲哚在大肠杆菌细胞质 pH 值的调节中起着关键作用。吲哚是一种具有多种信号作用的芳香分子。已经描述了两种吲哚信号模式:持续信号和脉冲信号。后者由静止期进入时细胞内吲哚短暂但强烈的升高来体现。我们表明,在允许吲哚产生的条件下,细胞将细胞质 pH 值维持在 7.2。相比之下,在没有产生吲哚的条件下,细胞质 pH 值接近 7.8。我们证明 pH 值的调节是由脉冲而非持续的吲哚信号引起的。此外,我们说明了在这种情况下,吲哚的相关特性是它能够在细胞质膜中传导质子。此外,我们表明,在富营养培养基中正常进入静止期时发生的吲哚脉冲的影响作为一种“记忆”,可以维持细胞质 pH 值,直到进入下一个静止期。吲哚介导的细胞质 pH 值降低可能解释了为什么吲哚为大肠杆菌提供了一定程度的抗应激保护,包括一些杀菌抗生素。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/92c2/6405993/b2b9acf05f08/41598_2019_40560_Fig1_HTML.jpg

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