Effects of pleiotropic ompR and envZ alleles of Escherichia coli on envelope stress and antibiotic sensitivity.

IF 2.7 3区 生物学 Q3 MICROBIOLOGY
Journal of Bacteriology Pub Date : 2024-06-20 Epub Date: 2024-05-29 DOI:10.1128/jb.00172-24
Henri Gerken, Dasvit Shetty, Brea Kern, Linda J Kenney, Rajeev Misra
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引用次数: 0

Abstract

The EnvZ-OmpR two-component system of Escherichia coli regulates the expression of the ompF and ompC porin genes in response to medium osmolarity. However, certain mutations in envZ confer pleiotropy by affecting the expression of genes of the iron and maltose regulons not normally controlled by EnvZ-OmpR. In this study, we obtained two novel envZ and ompR pleiotropic alleles, envZT15P and ompRL19Q, among revertants of a mutant with heightened envelope stress and an outer membrane (OM) permeability defect. Unlike envZ, pleiotropic mutations in ompR have not been described previously. The mutant alleles reduced the expression of several outer membrane proteins (OMPs), overcame the temperature-sensitive growth defect of a protease-deficient (ΔdegP) strain, and lowered envelope stress and OM permeability defects in a background lacking the BamB protein of an essential β-barrel assembly machinery complex. Biochemical analysis showed OmpRL19Q, like wild-type OmpR, is readily phosphorylated by EnvZ, but the EnvZ-dependent dephosphorylation of OmpRL19Q~P was drastically impaired compared to wild-type OmpR. This defect would lead to a prolonged half-life for OmpRL19Q~P, an outcome remarkably similar to what we had previously described for EnvZR397L, resulting in pleiotropy. By employing null alleles of the OMP genes, it was determined that the three pleiotropic alleles lowered envelope stress by reducing OmpF and LamB levels. The absence of LamB was principally responsible for lowering the OM permeability defect, as assessed by the reduced sensitivity of a ΔbamB mutant to vancomycin and rifampin. Possible mechanisms by which novel EnvZ and OmpR mutants influence EnvZ-OmpR interactions and activities are discussed.IMPORTANCEMaintenance of the outer membrane (OM) integrity is critical for the survival of Gram-negative bacteria. Several envelope homeostasis systems are activated when OM integrity is perturbed. Through the isolation and characterization of novel pleiotropic ompR/envZ alleles, this study highlights the involvement of the EnvZ-OmpR two-component system in lowering envelope stress and the OM permeability defect caused by the loss of proteins that are involved in OM biogenesis, envelope homeostasis, and structural integrity.

大肠埃希氏菌的多态性 ompR 和 envZ 等位基因对包膜压力和抗生素敏感性的影响。
大肠杆菌的 EnvZ-OmpR 双组分系统调节 ompF 和 ompC 孔蛋白基因的表达,以应对培养基渗透压的变化。然而,envZ 的某些突变会影响通常不受 EnvZ-OmpR 控制的铁和麦芽糖调控子基因的表达,从而产生多效性。在这项研究中,我们从一种包膜应激和外膜(OM)通透性缺陷加剧的突变体的回归子中获得了两种新型 envZ 和 ompR 多效等位基因 envZT15P 和 ompRL19Q。与 envZ 不同,ompR 的多向突变以前从未被描述过。突变等位基因减少了几种外膜蛋白(OMPs)的表达,克服了蛋白酶缺陷(ΔdegP)菌株的温度敏感性生长缺陷,并在缺乏重要的β管组装机制复合物的BamB蛋白的背景下降低了包膜应力和外膜渗透性缺陷。生化分析表明,OmpRL19Q与野生型OmpR一样,容易被EnvZ磷酸化,但与野生型OmpR相比,依赖于EnvZ的OmpRL19Q~P的去磷酸化作用大大减弱。这一缺陷将导致 OmpRL19Q~P 的半衰期延长,这一结果与我们之前描述的 EnvZR397L 非常相似,从而导致多生物效应。通过使用 OMP 基因的空等位基因,我们确定这三个多效等位基因通过降低 OmpF 和 LamB 水平来降低包膜压力。根据ΔbamB突变体对万古霉素和利福平敏感性降低的情况评估,LamB的缺失是降低OM通透性缺陷的主要原因。本文讨论了新型 EnvZ 和 OmpR 突变体影响 EnvZ-OmpR 相互作用和活性的可能机制。当外膜完整性受到干扰时,一些包膜稳态系统会被激活。本研究通过分离和鉴定新型多效性 ompR/envZ 等位基因,强调了 EnvZ-OmpR 双组分系统参与降低包膜压力,以及参与 OM 生物发生、包膜稳态和结构完整性的蛋白质缺失导致的 OM 渗透性缺陷。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Bacteriology
Journal of Bacteriology 生物-微生物学
CiteScore
6.10
自引率
9.40%
发文量
324
审稿时长
1.3 months
期刊介绍: The Journal of Bacteriology (JB) publishes research articles that probe fundamental processes in bacteria, archaea and their viruses, and the molecular mechanisms by which they interact with each other and with their hosts and their environments.
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