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LCP家族蛋白Psr是细胞壁完整性和毒力所必需的。 (原句结尾不完整,推测补充了句号和相关生物名称,如某种细菌等,这里按照完整语义翻译)

The LCP Family Protein, Psr, Is Required for Cell Wall Integrity and Virulence in .

作者信息

Rajaei Atefeh, Rowe Hannah M, Neely Melody N

机构信息

Molecular and Biomedical Sciences Department, University of Maine, Orono, ME 04469, USA.

Department of Microbiology, Oregon State University, Corvallis, OR 97331, USA.

出版信息

Microorganisms. 2022 Jan 20;10(2):217. doi: 10.3390/microorganisms10020217.

Abstract

A robust cell envelope is the first line of protection for an infecting pathogen when encountering the immune defense of its host. In Gram-positive organisms, LytR-CpsA-Psr (LCP) family proteins play a major role in the synthesis and assembly of the cell envelope. While these proteins could be considered for potential new drug targets, not enough is known about how they function to support the integrity of the cell wall. (group B streptococcus or GBS) is known to encode at least three LCP family proteins, including CpsA, LytR (BrpA) and Psr. Using strains of GBS that have mutations in two of the three LCP proteins, we were able to determine a role for these proteins in GBS cell wall integrity. The results presented here demonstrate that the absence of Psr results in a decreased growth rate, decreased viability over time, inconsistent cocci morphology and diminished cell wall integrity, as well as an increased penicillin susceptibility, decreased capsule levels and attenuation in virulence in a zebrafish model of infectious disease. A strain that is missing two of the LCP family proteins, CpsA and Psr, exhibits an increase in these defective phenotypes, indicating that CpsA and Psr are partially redundant in function.

摘要

当感染性病原体遇到宿主的免疫防御时,坚固的细胞包膜是其第一道保护防线。在革兰氏阳性菌中,LytR-CpsA-Psr(LCP)家族蛋白在细胞包膜的合成和组装中起主要作用。虽然这些蛋白可被视为潜在的新药物靶点,但对于它们如何支持细胞壁完整性的功能了解不足。B族链球菌(GBS)已知至少编码三种LCP家族蛋白,包括CpsA、LytR(BrpA)和Psr。利用在三种LCP蛋白中的两种发生突变的GBS菌株,我们能够确定这些蛋白在GBS细胞壁完整性中的作用。此处呈现的结果表明,缺失Psr会导致生长速率降低、随着时间推移活力下降、球菌形态不一致、细胞壁完整性受损,以及青霉素敏感性增加、荚膜水平降低和在斑马鱼传染病模型中毒力减弱。缺失两种LCP家族蛋白CpsA和Psr的菌株在这些缺陷表型上有所增加,表明CpsA和Psr在功能上部分冗余。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b6c1/8875755/b13f375d0c09/microorganisms-10-00217-g001.jpg

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