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编码RNA聚合酶ω亚基的rpoZ基因的缺失,导致耻垢分枝杆菌出现多效性表面相关表型。

Deletion of the rpoZ gene, encoding the omega subunit of RNA polymerase, results in pleiotropic surface-related phenotypes in Mycobacterium smegmatis.

作者信息

Mathew Renjith, Mukherjee Raju, Balachandar Radhakrishnan, Chatterji Dipankar

机构信息

Molecular Biophysics Unit, Indian Institute of Science, Bangalore 560012, India.

出版信息

Microbiology (Reading). 2006 Jun;152(Pt 6):1741-1750. doi: 10.1099/mic.0.28879-0.

Abstract

The omega subunit, the smallest subunit of bacterial RNA polymerase, is known to be involved in maintaining the conformation of the beta' subunit and aiding its recruitment to the rest of the core enzyme assembly in Escherichia coli. It has recently been shown in Mycobacterium smegmatis, by creating a deletion mutation of the rpoZ gene encoding omega, that the physiological role of the omega subunit also includes providing physical protection to beta'. Interestingly, the mutant had altered colony morphology. This paper demonstrates that the mutant mycobacterium has pleiotropic phenotypes including reduced sliding motility and defective biofilm formation. Analysis of the spatial arrangement of biofilms by electron microscopy suggests that the altered phenotype of the mutant arises from a deficiency in generation of extracellular matrix. Complementation of the mutant strain with a copy of the wild-type rpoZ gene integrated in the bacterial chromosome restored both sliding motility and biofilm formation to the wild-type state, unequivocally proving the role of omega in the characteristics observed for the mutant bacterium. Analysis of the cell wall composition demonstrated that the mutant bacterium had an identical glycopeptidolipid profile to the wild-type, but failed to synthesize the short-chain mycolic acids characteristic of biofilm growth in M. smegmatis.

摘要

欧米伽亚基是细菌RNA聚合酶中最小的亚基,已知它在大肠杆菌中参与维持贝塔亚基的构象,并协助其被招募到核心酶组装体的其他部分。最近在耻垢分枝杆菌中发现,通过创建编码欧米伽的rpoZ基因的缺失突变,欧米伽亚基的生理作用还包括为贝塔亚基提供物理保护。有趣的是,该突变体的菌落形态发生了改变。本文表明,突变分枝杆菌具有多效性表型,包括滑动运动能力降低和生物膜形成缺陷。通过电子显微镜对生物膜空间排列的分析表明,突变体改变的表型源于细胞外基质生成的缺陷。用整合在细菌染色体中的野生型rpoZ基因拷贝对突变菌株进行互补,可使滑动运动能力和生物膜形成恢复到野生型状态,明确证明了欧米伽在突变细菌所观察到的特征中的作用。细胞壁组成分析表明,突变细菌的糖肽脂谱与野生型相同,但未能合成耻垢分枝杆菌生物膜生长所特有的短链分枝菌酸。

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