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唾液链球菌中脂磷壁酸 D-丙氨酸化的调控。

Regulation of D-alanylation of lipoteichoic acid in Streptococcus gordonii.

机构信息

Canadian Center for Vaccinology, Dalhousie University and the IWK Health Center, Halifax, NS, Canada.

Department of Microbiology and Immunology, Dalhousie University and the IWK Health Center, Halifax, NS, Canada.

出版信息

Microbiology (Reading). 2011 Aug;157(Pt 8):2248-2256. doi: 10.1099/mic.0.048140-0. Epub 2011 May 20.

Abstract

d-Alanyl esters on lipoteichoic acid (LTA) are involved in adhesion, biofilm formation, resistance to cationic antimicrobial peptides, and immune stimulation. There is evidence that bacteria can modulate the level of d-alanyl esters on LTA in response to challenge, but the mechanism of regulation appears to be different among bacteria. In this study, expression of the dlt operon responsible for d-alanylation of LTA was examined in the commensal bacterium Streptococcus gordonii. dlt expression was assessed using the dlt promoter-lacZ reporter gene assay, LTA d-alanine content measurements and dlt mRNA quantification. The results showed that dlt expression was growth phase-dependent, with the greatest expression at the mid-exponential phase of growth. In contrast to Staphylococcus aureus, dlt expression in Strep. gordonii was not affected by the exogenous addition of Mg(2+) or K(+). Interestingly, dlt expression was upregulated under acidic conditions or when cells were stressed with polymyxin B, indicating that cell envelope stress may be a signal for dlt expression. In view of these results, mutants defective in the cell envelope stress LiaSR two-component regulatory system were constructed. The liaS and liaR mutants showed an increase in dlt expression over the parent strain at neutral pH. The mutants failed to respond to low pH and polymyxin B stress; dlt expression remained the same in the presence or absence of these stresses. These results suggest that dlt expression in Strep. gordonii is regulated by the LiaSR regulatory system in response to environmental signals such as pH and polymyxin B. The regulation appears to be complex, involving both repression and activation mechanisms.

摘要

脂磷壁酸(LTA)上的 D-丙氨酸酯参与黏附、生物膜形成、抵抗阳离子抗菌肽和免疫刺激。有证据表明,细菌可以根据挑战来调节 LTA 上 D-丙氨酸酯的水平,但调节机制在不同细菌中似乎不同。在这项研究中,检查了共生细菌戈登链球菌中负责 LTA D-丙氨酸化的 dlt 操纵子的表达。使用 dlt 启动子-lacZ 报告基因测定、LTA D-丙氨酸含量测量和 dlt mRNA 定量来评估 dlt 表达。结果表明,dlt 表达与生长阶段有关,在生长的中指数期表达最大。与金黄色葡萄球菌不同,Strep. gordonii 中的 dlt 表达不受外源性添加 Mg2+或 K+的影响。有趣的是,dlt 表达在酸性条件下或细胞受到多粘菌素 B 应激时上调,表明细胞包膜应激可能是 dlt 表达的信号。鉴于这些结果,构建了细胞包膜应激 LiaSR 双组分调节系统缺陷的突变体。liaS 和 liaR 突变体在中性 pH 下比亲本菌株的 dlt 表达增加。突变体无法对低 pH 和多粘菌素 B 应激做出反应;在存在或不存在这些应激的情况下,dlt 表达保持不变。这些结果表明,Strep. gordonii 中的 dlt 表达受 LiaSR 调节系统调节,以响应环境信号,如 pH 和多粘菌素 B。这种调节似乎很复杂,涉及抑制和激活机制。

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