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粪肠球菌中溶细胞素基因的表达受需氧条件的调控。

Cytolysin gene expression in Enterococcus faecalis is regulated in response to aerobiosis conditions.

作者信息

Day A M, Cove J H, Phillips-Jones M K

机构信息

Division of Microbiology, School of Biochemistry and Molecular Biology, University of Leeds, Leeds LS2 9JT, UK.

出版信息

Mol Genet Genomics. 2003 Apr;269(1):31-9. doi: 10.1007/s00438-003-0819-1. Epub 2003 Feb 22.

Abstract

Here we investigate the expression of cylL(L)and cylL(S), the genes that encode the structural subunits of the cytolysin/haemolysin of Enterococcus faecalis, in response to aerobiosis conditions. Haemolysis assays of E. faecalis strains cultured under aerobic and anaerobic conditions revealed three different haemolytic phenotypes, one of which exhibited greater haemolysis under anaerobic conditions than under aerobic conditions, and was shown to be associated with the presence of the cyl genes. Reporter gene studies revealed that cylL(L) L(S) promoter activity was significantly greater (up to 8.6-fold) under anaerobic compared to aerobic conditions throughout batch growth, demonstrating that these genes are regulated in response to the degree of aerobiosis. Band shift assays confirmed the binding of a protein factor to the region between 202 and 37 bp upstream of the cylL(L)start codon, and a higher level of binding was observed with anaerobically derived cell-free extracts than with extracts of aerobically grown cells. This is the first report of an oxygen-regulated virulence factor in E. faecalis (that is distinct from the quorum-sensing regulatory system reported previously), and may be of in vivo relevance for the bacterium in biofilms and other environments characterised by oxygen gradients.

摘要

在此,我们研究了粪肠球菌细胞溶素/溶血素结构亚基编码基因cylL(L)和cylL(S)在需氧条件下的表达情况。对在有氧和无氧条件下培养的粪肠球菌菌株进行溶血试验,发现了三种不同的溶血表型,其中一种在无氧条件下的溶血作用比在有氧条件下更强,且已证明与cyl基因的存在有关。报告基因研究表明,在整个分批培养过程中,与有氧条件相比,cylL(L)L(S)启动子活性在无氧条件下显著更高(高达8.6倍),这表明这些基因受需氧程度的调节。凝胶迁移试验证实了一种蛋白质因子与cylL(L)起始密码子上游202至37 bp之间区域的结合,并且观察到来自无氧条件下的无细胞提取物的结合水平高于有氧生长细胞的提取物。这是关于粪肠球菌中一种氧调节毒力因子的首次报道(不同于先前报道的群体感应调节系统),并且可能与该细菌在生物膜和其他以氧梯度为特征的环境中的体内情况相关。

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