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首页> 外文期刊>BMC Microbiology >Bicarbonate enhances expression of the endocarditis and biofilm associated pilus locus, ebpR-ebpABC, in Enterococcus faecalis
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Bicarbonate enhances expression of the endocarditis and biofilm associated pilus locus, ebpR-ebpABC, in Enterococcus faecalis

机译:碳酸氢盐增强粪肠球菌中心内膜炎和生物膜相关菌毛基因座ebpR-ebpABC的表达

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Background We previously identified ebpR, encoding a potential member of the AtxA/Mga transcriptional regulator family, and showed that it is important for transcriptional activation of the Enterococcus faecalis e ndocarditis and b iofilm associated p ilus operon, ebpABC. Although ebpR is not absolutely essential for ebpABC expression (100-fold reduction), its deletion led to phenotypes similar to those of an ebpABC mutant such as absence of pili at the cell surface and, consequently, reduced biofilm formation. A non-piliated ebpABC mutant has been shown to be attenuated in a rat model of endocarditis and in a murine urinary tract infection model, indicating an important participation of the ebpR-ebpABC locus in virulence. However, there is no report relating to the environmental conditions that affect expression of the ebpR-ebpABC locus. Results In this study, we examined the effect of CO2/HCO3-, pH, and the Fsr system on the ebpR-ebpABC locus expression. The presence of 5% CO2/0.1 M HCO3- increased ebpR-ebpABC expression, while the Fsr system was confirmed to be a weak repressor of this locus. The mechanism by which the Fsr system repressed the ebpR-ebpABC locus expression appears independent of the effects of CO2- bicarbonate. Furthermore, by using an ebpA::lacZ fusion as a reporter, we showed that addition of 0.1 M sodium bicarbonate to TSBG (buffered at pH 7.5), but not the presence of 5% CO2, induced ebpA expression in TSBG broth. In addition, using microarray analysis, we found 73 genes affected by the presence of sodium bicarbonate (abs(fold) > 2, P ebpA mRNA levels under the conditions tested. Conclusions This study reports that the ebp locus expression is enhanced by the presence of bicarbonate with a consequential increase in the number of cells producing pili. Although the molecular basis of the bicarbonate effect remains unclear, the pathway is independent of the Fsr system. In conclusion, E. faecalis joins the growing family of pathogens that regulates virulence gene expression in response to bicarbonate and/or CO2.
机译:背景我们以前鉴定了ebpR,它编码AtxA / Mga转录调节子家族的潜在成员,并表明它对于粪肠球菌肠内膜炎和与生物膜相关的操纵子ebpABC的转录激活很重要。尽管ebpR对于ebpABC表达不是绝对必要的(减少100倍),但其缺失导致表型与ebpABC突变体相似,例如在细胞表面没有菌毛,因此减少了生物膜的形成。在心内膜炎的大鼠模型和鼠的尿路感染模型中,未毛细化的ebpABC突变体已显示出减毒作用,表明ebpR-ebpABC基因座在毒力中的重要参与。但是,没有关于影响ebpR-ebpABC基因座表达的环境条件的报道。结果在这项研究中,我们检查了CO 2 / HCO 3 -,pH和Fsr系统对ebpR-ebpABC基因座的影响表达。 5%CO 2 /0.1 M HCO 3 -的存在增加ebpR-ebpABC表达,而Fsr系统被证实是弱的该基因座的阻遏物。 Fsr系统抑制ebpR-ebpABC基因座表达的机制似乎与CO 2 -碳酸氢盐的作用无关。此外,通过使用ebpA :: lacZ融合蛋白作为报告基因,我们表明向TSBG中添加了0.1 M的碳酸氢钠(缓冲在pH 7.5),但没有诱导5%CO 2 的存在。 ebpA在TSBG肉汤中的表达。此外,使用微阵列分析,我们发现73个基因在测试条件下受碳酸氢钠存在的影响(abs(fold)> 2,P ebpA mRNA水平)。结论本研究报告说,存在eBPA基因位点会增强ebp基因座的表达。碳酸菌会增加产生菌毛的细胞数量,尽管碳酸氢盐作用的分子基础尚不清楚,但该途径与Fsr系统无关,总的来说,粪肠球菌加入了调节病毒基因表达的病原体家族。响应碳酸氢盐和/或CO 2

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