Gualdi Luciana, Tagliabue Letizia, Landini Paolo
Department of Biomolecular Sciences and Biotechnology, University of Milan, Via Celoria 26, 20133 Milan, Italy.
J Bacteriol. 2007 Nov;189(22):8034-43. doi: 10.1128/JB.00900-07. Epub 2007 Sep 14.
Bacteria can switch from a single-cell (planktonic) mode to a multicellular community (biofilm) mode via production of cell-cell aggregation and surface adhesion factors. In this report, we present evidence that the CsgD protein, a transcription regulator involved in biofilm formation in Escherichia coli, modulates the expression of the rpoS (sigma(S)) regulon. Protein pattern analysis of E. coli cells in stationary phase shows that CsgD affects the expression of several proteins encoded by sigma(S)-dependent genes. CsgD regulation of sigma(S)-dependent genes takes place at gene transcription level, does not bypass the need for rpoS, and is abolished in an rpoS-null mutant. Consistent with these results, we find that CsgD expression leads to an increase in sigma(S) intracellular concentration. Increase in sigma(S) cellular amount is mediated by CsgD-dependent transcription activation of iraP, encoding a factor involved in sigma(S) protein stabilization. Our results strongly suggest that the CsgD regulatory protein plays a major role as a relay between adhesion factors production and sigma(S)-dependent gene expression via sigma(S) protein stabilization. Direct coordination between biofilm formation and expression of the rpoS regulon could positively impact important biological processes, such as host colonization or response to environmental stresses.
细菌可通过产生细胞间聚集和表面粘附因子,从单细胞(浮游)模式转变为多细胞群落(生物膜)模式。在本报告中,我们提供证据表明,CsgD蛋白作为一种参与大肠杆菌生物膜形成的转录调节因子,可调节rpoS(σS)调节子的表达。对处于稳定期的大肠杆菌细胞进行蛋白质模式分析表明,CsgD会影响由σS依赖性基因编码的几种蛋白质的表达。CsgD对σS依赖性基因的调控发生在基因转录水平,不绕过对rpoS的需求,且在rpoS基因缺失突变体中被消除。与这些结果一致,我们发现CsgD的表达会导致σS细胞内浓度增加。σS细胞数量的增加是由CsgD依赖性转录激活iraP介导的,iraP编码一种参与σS蛋白稳定的因子。我们的结果强烈表明,CsgD调节蛋白通过σS蛋白稳定,在粘附因子产生和σS依赖性基因表达之间起主要的中继作用。生物膜形成与rpoS调节子表达之间的直接协调可能对重要的生物学过程产生积极影响,如宿主定殖或对环境压力的反应。