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粘质沙雷氏菌的OxyR同源物介导表面附着和生物膜形成。

A Serratia marcescens OxyR homolog mediates surface attachment and biofilm formation.

作者信息

Shanks Robert M Q, Stella Nicholas A, Kalivoda Eric J, Doe Megan R, O'Dee Dawn M, Lathrop Kira L, Guo Feng Li, Nau Gerard J

机构信息

Charles T Campbell Laboratory of Ophthalmic Microbiology, Department of Ophthalmology, UPMC Eye Center, Pittsburgh, PA 15213, USA.

出版信息

J Bacteriol. 2007 Oct;189(20):7262-72. doi: 10.1128/JB.00859-07. Epub 2007 Aug 3.

Abstract

OxyR is a conserved bacterial transcription factor with a regulatory role in oxidative stress response. From a genetic screen for genes that modulate biofilm formation in the opportunistic pathogen Serratia marcescens, mutations in an oxyR homolog and predicted fimbria structural genes were identified. S. marcescens oxyR mutants were severely impaired in biofilm formation, in contrast to the hyperbiofilm phenotype exhibited by oxyR mutants of Escherichia coli and Burkholderia pseudomallei. Further analysis revealed that OxyR plays a role in the primary attachment of cells to a surface. Similar to what is observed in other bacterial species, S. marcescens OxyR is required for oxidative stress resistance. Mutations in oxyR and type I fimbrial genes resulted in severe defects in fimbria-associated phenotypes, revealing roles in cell-cell and cell-biotic surface interactions. Transmission electron microscopy revealed the absence of fimbria-like surface structures on an OxyR-deficient strain and an enhanced fimbrial phenotype in strains bearing oxyR on a multicopy plasmid. The hyperfimbriated phenotype conferred by the multicopy oxyR plasmid was absent in a type I fimbrial mutant background. Real-time reverse transcriptase PCR indicated an absence of transcripts from a fimbrial operon in an oxyR mutant that were present in the wild type and a complemented oxyR mutant strain. Lastly, chromosomal P(lac)-mediated expression of fimABCD was sufficient to restore wild-type levels of yeast agglutination and biofilm formation to an oxyR mutant. Together, these data support a model in which OxyR contributes to early stages of S. marcescens biofilm formation by influencing fimbrial gene expression.

摘要

OxyR是一种保守的细菌转录因子,在氧化应激反应中具有调节作用。通过对机会致病菌粘质沙雷氏菌中调节生物膜形成的基因进行遗传筛选,鉴定出了一个oxyR同源物和预测的菌毛结构基因中的突变。与大肠杆菌和类鼻疽伯克霍尔德菌的oxyR突变体表现出的高生物膜表型相反,粘质沙雷氏菌的oxyR突变体在生物膜形成方面严重受损。进一步分析表明,OxyR在细胞与表面的初始附着中起作用。与在其他细菌物种中观察到的情况类似,粘质沙雷氏菌的OxyR是抗氧化应激所必需的。oxyR和I型菌毛基因的突变导致菌毛相关表型出现严重缺陷,揭示了其在细胞-细胞和细胞-生物表面相互作用中的作用。透射电子显微镜显示,OxyR缺陷菌株缺乏菌毛样表面结构,而在多拷贝质粒上携带oxyR的菌株中菌毛表型增强。在I型菌毛突变体背景下,多拷贝oxyR质粒赋予的高菌毛表型不存在。实时逆转录聚合酶链反应表明,oxyR突变体中一个菌毛操纵子的转录本缺失,而野生型和互补的oxyR突变体菌株中存在该转录本。最后,染色体P(lac)介导的fimABCD表达足以将酵母凝集和生物膜形成的野生型水平恢复到oxyR突变体。总之,这些数据支持了一个模型,即OxyR通过影响菌毛基因表达促进粘质沙雷氏菌生物膜形成的早期阶段。

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