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Staphylococcus epidermidis SrrAB Regulates Bacterial Growth and Biofilm Formation Differently under Oxic and Microaerobic Conditions

机译:表皮葡萄球菌SrrAB在有氧和微需氧条件下不同地调节细菌生长和生物膜形成。

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摘要

SrrAB expression in Staphylococcus epidermidis strain 1457 (SE1457) was upregulated during a shift from oxic to microaerobic conditions. An srrA deletion (ΔsrrA) mutant was constructed for studying the regulatory function of SrrAB. The deletion resulted in retarded growth and abolished biofilm formation both in vitro and in vivo and under both oxic and microaerobic conditions. Associated with the reduced biofilm formation, the ΔsrrA mutant produced much less polysaccharide intercellular adhesion (PIA) and showed decreased initial adherence capacity. Microarray analysis showed that the srrA mutation affected transcription of 230 genes under microaerobic conditions, and 51 genes under oxic conditions. Quantitative real-time PCR confirmed this observation and showed downregulation of genes involved in maintaining the electron transport chain by supporting cytochrome and quinol-oxidase assembly (e.g., qoxB and ctaA) and in anaerobic metabolism (e.g., pflBA and nrdD). In the ΔsrrA mutant, the expression of the biofilm formation-related gene icaR was upregulated under oxic conditions and downregulated under microaerobic conditions, whereas icaA was downregulated under both conditions. An electrophoretic mobility shift assay further revealed that phosphorylated SrrA bound to the promoter regions of icaR, icaA, qoxB, and pflBA, as well as its own promoter region. These findings demonstrate that in S. epidermidis SrrAB is an autoregulator and regulates biofilm formation in an ica-dependent manner. Under oxic conditions, SrrAB modulates electron transport chain activity by positively regulating qoxBACD transcription. Under microaerobic conditions, it regulates fermentation processes and DNA synthesis by modulating the expression of both the pfl operon and nrdDG.
机译:表皮葡萄球菌菌株1457(SE1457)中的SrrAB表达在从有氧到微有氧条件的转变过程中被上调。构建了一个srrA缺失(ΔsrrA)突变体,用于研究SrrAB的调控功能。该缺失导致体外和体内以及在有氧和微需氧条件下的生长受阻和生物膜形成被消除。与减少的生物膜形成相关,ΔsrrA突变体产生更少的多糖细胞间粘附(PIA),并显示出降低的初始粘附能力。芯片分析表明,srrA突变在微需氧条件下影响230个基因的转录,在有氧条件下影响51个基因的转录。实时定量PCR证实了这一观察结果,并显示了通过支持细胞色素和喹诺酮氧化酶装配(例如qoxB和ctaA)和厌氧代谢(例如pflBA和nrdD)来维护电子传输链的基因的下调。在ΔsrrA突变体中,与生物膜形成相关的基因icaR的表达在有氧条件下上调,在有氧条件下下调,而icaA在两种条件下下调。电泳迁移率变动分析进一步揭示,磷酸化的SrrA与icaR,icaA, qoxB pflBA 的启动子区域结合,以及其自身的启动子区域。这些发现证明了在 S中。 epidermidis SrrAB是一种自动调节剂,可以以 ica 依赖的方式调节生物膜的形成。在有氧条件下,SrrAB通过正向调节 qoxBACD 转录来调节电子传输链的活性。在微需氧条件下,它通过调节 pfl 操纵子和 nrdDG 的表达来调节发酵过程和DNA合成。

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