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Cyclic Enterobacterial Common Antigen Maintains the Outer Membrane Permeability Barrier of Escherichia coli in a Manner Controlled by YhdP

机译:循环肠杆菌常见抗原以由YHDP控制的方式保持大肠杆菌的外膜渗透屏障

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摘要

Gram-negative bacteria have an outer membrane (OM) impermeable to many toxic compounds that can be further strengthened during stress. In Enterobacteriaceae, the envelope contains enterobacterial common antigen (ECA), a carbohydrate-derived moiety conserved throughout Enterobacteriaceae, the function of which is poorly understood. Previously, we identified several genes in Escherichia coli K-12 responsible for an RpoS-dependent decrease in envelope permeability during carbon-limited stationary phase. For one of these, yhdP, a gene of unknown function, deletion causes high levels of both vancomycin and detergent sensitivity, independent of growth phase. We isolated spontaneous suppressor mutants of yhdP with loss-of-function mutations in the ECA biosynthesis operon. ECA biosynthesis gene deletions suppressed envelope permeability from yhdP deletion independently of envelope stress responses and interactions with other biosynthesis pathways, demonstrating suppression is caused directly by removing ECA. Furthermore, yhdP deletion changed cellular ECA levels and yhdP was found to co-occur phylogenetically with the ECA biosynthesis operon. Cells make three forms of ECA: ECA lipopolysaccharide (LPS), an ECA chain linked to LPS core; ECA phosphatidylglycerol, a surface-exposed ECA chain linked to phosphatidylglycerol; and cyclic ECA, a cyclized soluble ECA molecule found in the periplasm. We determined that the suppression of envelope permeability with yhdP deletion is caused specifically by the loss of cyclic ECA, despite lowered levels of this molecule found with yhdP deletion. Furthermore, removing cyclic ECA from wild-type cells also caused changes to OM permeability. Our data demonstrate cyclic ECA acts to maintain the OM permeability barrier in a manner controlled by YhdP.Enterobacterial common antigen (ECA) is a surface antigen made by all members of Enterobacteriaceae, including many clinically relevant genera (e.g., Escherichia, Klebsiella, Yersinia). Although this surface-exposed molecule is conserved throughout Enterobacteriaceae, very few functions have been ascribed to it. Here, we have determined that the periplasmic form of ECA, cyclic ECA, plays a role in maintaining the outer membrane permeability barrier. This activity is controlled by a protein of unknown function, YhdP, and deletion of yhdP damages the OM permeability barrier in a cyclic ECA-dependent manner, allowing harmful molecules such as antibiotics into the cell. This role in maintenance of the envelope permeability barrier is the first time a phenotype has been described for cyclic ECA. As the Gram-negative envelope is generally impermeable to antibiotics, understanding the mechanisms through which the barrier is maintained and antibiotics are excluded may lead to improved antibiotic delivery.
机译:革兰氏阴性细菌具有外膜(OM),其可渗透到许多可以在应力期间进一步加强的毒性化合物。在肠杆菌中,封套含有肠杆菌常见的抗原(ECA),一种碳水化合物衍生的部分保守整个肠杆菌,其功能很差。以前,我们在大肠杆菌K-12中鉴定了几种基因,其负责在碳限换期期间的包络渗透率的RPOS依赖性降低。对于其中之一,YHDP,一种未知功能的基因,缺失导致高水平的万古霉素和洗涤剂敏感性,与生长阶段无关。我们将YHDP的自发性抑制突变体与ECA生物合成型术中的功能丧失突变分离出来。 ECA生物合成基因缺失抑制来自YHDP缺失的包络渗透性独立于包络应力响应和与其他生物合成途径的相互作用,通过除去ECA直接引起抑制。此外,YHDP缺失改变了细胞ECA水平,并且发现YHDP与ECA生物合成型术语有影响。细胞制备三种形式的ECA:ECA脂多糖(LPS),与LPS芯连接的ECA链; ECA磷脂基甘油,表面暴露的ECA链与磷脂酰甘油连接;和循环ECA,在周质中发现的环状可溶性ECA分子。我们确定抑制具有YHDP缺陷的包络渗透性是由循环ECA的损失引起的,尽管使用YHDP缺失的该分子水平降低了。此外,从野生型电池中除去循环ECA也引起了对OM渗透性的变化。我们的数据展示了循环ECA的作用,以维持由Yhdp.Entobacterial常见抗原(ECA)控制的方式以肠杆菌常见抗原(ECA)的方式保持隆渗透性屏障,是由肠杆菌痤疮的所有成员制成的表面抗原(包括许多临床相关的属(例如,Escherichia,Klebsiella,Yersinia)制成的表面抗原。虽然这种表面暴露的分子在整个肠杆菌中保守,但很少有函数已经归因于它。在这里,我们已经确定了ECA,循环ECA的周质形式,在保持外膜渗透性屏障方面发挥作用。该活性由未知功能,YHDP的蛋白质控制,YHDP缺失以循环的ECA依赖性方式损坏OM渗透屏障,使得有害分子如抗生素进入细胞中。这种在包络渗透性屏障的维持中的这种作用是第一次已经针对循环ECA描述了表型。由于革兰氏阴性封套通常不可渗透抗生素,了解维持屏障和抗生素的机制可能导致改善抗生素递送。

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