首页> 美国卫生研究院文献>Journal of Bacteriology >Gene Expression Regulation by the Curli Activator CsgD Protein: Modulation of Cellulose Biosynthesis and Control of Negative Determinants for Microbial Adhesion
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Gene Expression Regulation by the Curli Activator CsgD Protein: Modulation of Cellulose Biosynthesis and Control of Negative Determinants for Microbial Adhesion

机译:Curli激活剂CsgD蛋白的基因表达调控:纤维素生物合成的调节和微生物粘附的负面决定因素的控制。

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摘要

Curli fibers, encoded by the csgBAC genes, promote biofilm formation in Escherichia coli and other enterobacteria. Curli production is dependent on the CsgD transcription activator, which also promotes cellulose biosynthesis. In this study, we investigated the effects of CsgD expression from a weak constitutive promoter in the biofilm formation-deficient PHL565 strain of E. coli. We found that despite its function as a transcription activator, the CsgD protein is localized in the cytoplasmic membrane. Constitutive CsgD expression promotes biofilm formation by PHL565 and activates transcription from the csgBAC promoter; however, csgBAC expression remains dependent on temperature and the growth medium. Constitutive expression of the CsgD protein results in altered transcription patterns for at least 24 novel genes, in addition to the previously identified CsgD-dependent genes. The cspA and fecR genes, encoding regulatory proteins responding to cold shock and to iron, respectively, and yoaD, encoding a putative negative regulator of cellulose biosynthesis, were found to be some of the novel CsgD-regulated genes. Consistent with the predicted functional role, increased expression of the yoaD gene negatively affects cell aggregation, while yoaD inactivation results in stimulation of cell aggregation and leads to increased cellulose production. Inactivation of fecR results in significant increases in both cell aggregation and biofilm formation, while the effects of cspA are not as strong in the conditions tested. Our results indicate that CsgD can modulate cellulose biosynthesis through activation of the yoaD gene. In addition, the positive effect of CsgD on biofilm formation might be enhanced by repression of the fecR gene.
机译:由csgBAC基因编码的Curli纤维促进大肠杆菌和其他肠杆菌中生物膜的形成。 Curli的产生取决于CsgD转录激活因子,后者还促进纤维素的生物合成。在这项研究中,我们调查了大肠杆菌中生物膜形成缺陷的PHL565菌株中弱组成型启动子CsgD表达的影响。我们发现,尽管它具有转录激活功能,但CsgD蛋白却位于细胞质膜中。组成性CsgD表达促进PHL565形成生物膜,并激活csgBAC启动子的转录。但是,csgBAC表达仍然取决于温度和生长培养基。除了先前确定的CsgD依赖基因外,CsgD蛋白的组成型表达还导致至少24个新基因的转录模式发生变化。发现cspA和fecR基因分别编码对冷激和铁反应的调节蛋白,而yoaD编码假定的纤维素生物合成负调节剂,是一些新颖的CsgD调节基因。与预期的功能作用一致,yoaD基因表达的增加对细胞聚集产生负面影响,而yoaD失活会刺激细胞聚集并导致纤维素产量增加。 fecR的失活导致细胞聚集和生物膜形成的显着增加,而在测试条件下cspA的作用并不那么强。我们的结果表明,CsgD可以通过激活yoaD基因来调节纤维素的生物合成。另外,通过抑制fecR基因可以增强CsgD对生物膜形成的积极作用。

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