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ospAB的缺失可组成性激活伯氏疏螺旋体中的Rrp2-RpoN-RpoS途径(σN-σS级联反应)。

Abrogation of ospAB constitutively activates the Rrp2-RpoN-RpoS pathway (sigmaN-sigmaS cascade) in Borrelia burgdorferi.

作者信息

He Ming, Oman Tara, Xu Haijun, Blevins Jon, Norgard Michael V, Yang X Frank

机构信息

Department of Microbiology and Immunology, Indiana University School of Medicine, Indianapolis, IN 46202, USA.

出版信息

Mol Microbiol. 2008 Dec;70(6):1453-64. doi: 10.1111/j.1365-2958.2008.06491.x. Epub 2008 Oct 23.

Abstract

Molecular mechanisms underlying the reciprocal regulation of the two major surface lipoproteins and virulence factors of Borrelia burgdorferi, OspA and OspC, are not fully understood. Herein, we report that inactivation of the ospAB operon resulted in overproduction of OspC and many other lipoproteins via the constitutive activation of the Rrp2-RpoN-RpoS pathway. Complementing the ospAB mutant with a wild-type copy of ospA, but not an ospA variant that lacks the lipoprotein signal sequence, restored normal regulation of the Rrp2-RpoN-RpoS pathway; these results indicate that the phenotype was not caused by spurious mutations. Interestingly, while most of the ospAB mutant clones displayed a constitutive ospC expression phenotype, some ospAB mutant clones showed little or no ospC expression. Further analyses revealed that this OspC-negative phenotype was independent of abrogation of ospAB. While activation of the Rrp2-RpoN-RpoS pathway was recently shown to downregulate ospA, our findings suggest that reduction of OspA can also activate this pathway. We postulate that the activation of the Rrp2-RpoN-RpoS pathway and downregulation of OspA form a positive feedback loop that allows spirochaetes to produce and maintain a constant high level of OspC and other lipoproteins during tick feeding, a strategy that is critical for spirochaetal transmission and mammalian infection.

摘要

伯氏疏螺旋体两种主要表面脂蛋白及毒力因子OspA和OspC相互调控的分子机制尚未完全明确。在此,我们报告ospAB操纵子的失活通过Rrp2-RpoN-RpoS途径的组成型激活导致OspC及许多其他脂蛋白的过量产生。用ospA的野生型拷贝而非缺乏脂蛋白信号序列的ospA变体对ospAB突变体进行互补,可恢复Rrp2-RpoN-RpoS途径的正常调控;这些结果表明该表型并非由假突变引起。有趣的是,虽然大多数ospAB突变体克隆表现出组成型ospC表达表型,但一些ospAB突变体克隆显示很少或没有ospC表达。进一步分析表明,这种OspC阴性表型与ospAB的缺失无关。虽然最近显示Rrp2-RpoN-RpoS途径的激活会下调ospA,但我们的研究结果表明OspA的减少也可激活该途径。我们推测,Rrp2-RpoN-RpoS途径的激活和OspA的下调形成一个正反馈环,使螺旋体在蜱叮咬期间产生并维持高水平的OspC和其他脂蛋白,这一策略对螺旋体传播和哺乳动物感染至关重要。

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