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脂蛋白调节 MtrAB 双组分系统的活性,为分枝杆菌提供内在的多药耐药性、细胞分裂控制和细胞壁动态平衡。

A lipoprotein modulates activity of the MtrAB two-component system to provide intrinsic multidrug resistance, cytokinetic control and cell wall homeostasis in Mycobacterium.

机构信息

Department of Molecular Biology and Microbiology, School of Medicine, Case Western Reserve University, Cleveland, Ohio 44106, USA.

出版信息

Mol Microbiol. 2010 Apr;76(2):348-64. doi: 10.1111/j.1365-2958.2010.07110.x. Epub 2010 Mar 10.

Abstract

The MtrAB signal transduction system, which participates in multiple cellular processes related to growth and cell wall homeostasis, is the only two-component system known to be essential in Mycobacterium. In a screen for antibiotic resistance determinants in Mycobacterium smegmatis, we identified a multidrug-sensitive mutant with a transposon insertion in lpqB, the gene located immediately downstream of mtrA-mtrB. The lpqB mutant exhibited increased cell-cell aggregation and severe defects in surface motility and biofilm growth. lpqB cells displayed hyphal growth and polyploidism, reminiscent of the morphology of Streptomyces, a related group of filamentous Actinobacteria. Heterologous expression of M. tuberculosis LpqB restored wild-type characteristics to the lpqB mutant. LpqB interacts with the extracellular domain of MtrB, and influences MtrA phosphorylation and promoter activity of dnaA, an MtrA-regulated gene that affects cell division. Furthermore, in trans expression of the non-phosphorylated, inactive form of MtrA in wild-type M. smegmatis resulted in phenotypes similar to those of lpqB deletion, whereas expression of the constitutively active form of MtrA restored wild-type characteristics to the lpqB mutant. These results support a model in which LpqB, MtrB and MtrA form a three-component system that co-ordinates cytokinetic and cell wall homeostatic processes.

摘要

MtrAB 信号转导系统参与与生长和细胞壁动态平衡相关的多种细胞过程,是目前已知分枝杆菌中唯一必需的双组分系统。在对耻垢分枝杆菌中的抗生素抗性决定因素进行筛选时,我们发现了一个对多种药物敏感的突变体,该突变体在 mtrA-mtrB 之后的 lpqB 基因中插入了一个转座子。lpqB 突变体表现出细胞间聚集增加以及表面运动和生物膜生长的严重缺陷。lpqB 细胞表现出菌丝生长和多倍体化,类似于相关丝状放线菌 Streptomyces 的形态。结核分枝杆菌 LpqB 的异源表达使 lpqB 突变体恢复了野生型特征。LpqB 与 MtrB 的细胞外结构域相互作用,并影响 MtrA 的磷酸化和 dnaA 的启动子活性,dnaA 是一个受 MtrA 调控的基因,影响细胞分裂。此外,在野生型耻垢分枝杆菌中转表达非磷酸化、无活性形式的 MtrA 会导致类似于 lpqB 缺失的表型,而组成型激活形式的 MtrA 的表达则使 lpqB 突变体恢复野生型特征。这些结果支持了 LpqB、MtrB 和 MtrA 形成一个协调细胞分裂和细胞壁动态平衡过程的三组分系统的模型。

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