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微酸性环境改变铜绿假单胞菌毒力并导致细菌表面重塑。

A Mildly Acidic Environment Alters Pseudomonas aeruginosa Virulence and Causes Remodeling of the Bacterial Surface.

机构信息

Université catholique de Louvain, Louvain Drug Research Institute, Cellular & Molecular Pharmacology Unit (FACM), Brussels, Belgium.

Université catholique de Louvain, de Duve Institute, CELL Unit and PICT Platform, Brussels, Belgium.

出版信息

Microbiol Spectr. 2023 Aug 17;11(4):e0483222. doi: 10.1128/spectrum.04832-22. Epub 2023 Jun 6.

Abstract

Pseudomonas aeruginosa is a versatile pathogen that resists environmental stress, such as suboptimal pH. As a result of exposure to environmental stress, P. aeruginosa shows an altered virulence-related phenotype. This study investigated the modifications that P. aeruginosa undertakes at a mildly low pH (pH 5.0) compared with the bacteria grown in a neutral medium (pH 7.2). Results indicated that in a mildly acidic environment, expression of two-component system genes (/ and /), lipid A remodeling genes such as and and virulence genes, i.e., and , were induced. Moreover, lipid A of the bacteria grown at a mildly low pH is modified by adding 4-amino-arabinose (l-Ara4N). Additionally, the production of virulence factors such as rhamnolipid, alginate, and membrane vesicles is significantly higher in a mildly low-pH environment than in a neutral medium. Interestingly, at a mildly low pH, P. aeruginosa produces a thicker biofilm with higher biofilm biomass. Furthermore, studies on inner membrane viscosity and permeability showed that a mildly low pH causes a decrease in the inner membrane permeability and increases its viscosity. Besides, despite the importance of PhoP, PhoQ, PmrA, and PmrB in Gram-negative bacteria for responding to low pH stress, we observed that the absence of each of these two-component systems does not meaningfully impact the remodeling of the P. aeruginosa envelope. Given that P. aeruginosa is likely to encounter mildly acidic environments during infection in its host, the alterations that the bacterium undertakes under such conditions must be considered in designing antibacterial strategies against P. aeruginosa. P. aeruginosa encounters environments with acidic pH when establishing infections in hosts. The bacterium develops an altered phenotype to tolerate a moderate decrease in the environmental pH. At the level of the bacterial envelope, modified lipid A composition and a reduction of the bacterial inner membrane permeability and fluidity are among the changes P. aeruginosa undergoes at a mildly low pH. Also, the bacterium is more likely to form biofilm in a mildly acidic environment. Overall, these alterations in the P. aeruginosa phenotype put obstacles in the way of antibacterial activities. Thus, considering physiological changes in the bacterium at low pH helps design and implement antimicrobial approaches against this hostile microorganism.

摘要

铜绿假单胞菌是一种多功能病原体,能够抵抗环境压力,如低 pH 值。由于暴露于环境压力,铜绿假单胞菌表现出改变的与毒力相关的表型。本研究调查了铜绿假单胞菌在轻度低 pH 值(pH 5.0)下与在中性介质(pH 7.2)中生长相比所经历的改变。结果表明,在酸性环境中,双组分系统基因(/ 和 /)、脂质 A 重塑基因(如 和 )和毒力基因(即 和 )的表达被诱导。此外,在轻度低 pH 值下生长的细菌的脂质 A 通过添加 4-氨基阿拉伯糖(l-Ara4N)进行修饰。此外,在轻度低 pH 值环境中,毒力因子如鼠李糖脂、藻酸盐和膜泡的产生显著高于中性介质。有趣的是,在轻度低 pH 值下,铜绿假单胞菌产生具有更高生物膜生物量的更厚生物膜。此外,对内膜粘度和通透性的研究表明,轻度低 pH 值导致内膜通透性降低和粘度增加。此外,尽管 PhoP、PhoQ、PmrA 和 PmrB 在革兰氏阴性细菌中对于应对低 pH 值应激很重要,但我们观察到缺失这些双组分系统中的每一个都不会对铜绿假单胞菌包膜的重塑产生重大影响。鉴于铜绿假单胞菌在感染宿主时可能遇到轻度酸性环境,因此在设计针对铜绿假单胞菌的抗菌策略时,必须考虑细菌在这种条件下所经历的改变。铜绿假单胞菌在感染宿主时会遇到酸性 pH 值的环境。细菌会发展出改变的表型以耐受环境 pH 值的适度下降。在细菌包膜的水平上,修饰的脂质 A 组成以及细菌内膜通透性和流动性的降低是铜绿假单胞菌在轻度低 pH 值下经历的改变之一。此外,细菌在轻度酸性环境中更有可能形成生物膜。总体而言,这些铜绿假单胞菌表型的改变给抗菌活性带来了障碍。因此,考虑细菌在低 pH 值下的生理变化有助于设计和实施针对这种恶劣微生物的抗菌方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b5f3/10433952/f57446661fff/spectrum.04832-22-f001.jpg

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