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KdpE 正向调控钩端螺旋体 kdp 表达——以双曲钩端螺旋体新型 β-半乳糖苷酶报告菌株为例。

Positive regulation of Leptospira interrogans kdp expression by KdpE as Demonstrated with a novel β-galactosidase reporter in Leptospira biflexa.

机构信息

Research Service, Veterans Affairs Greater Los Angeles Healthcare System, Los Angeles, California, USA.

出版信息

Appl Environ Microbiol. 2012 Aug;78(16):5699-707. doi: 10.1128/AEM.00713-12. Epub 2012 Jun 8.

Abstract

Leptospirosis is a potentially deadly zoonotic disease that afflicts humans and animals. Leptospira interrogans, the predominant agent of leptospirosis, encounters diverse conditions as it proceeds through its life cycle, which includes stages inside and outside the host. Unfortunately, the number of genetic tools available for examining the regulation of gene expression in L. interrogans is limited. Consequently, little is known about the genetic circuits that control gene expression in Leptospira. To better understand the regulation of leptospiral gene expression, the L. interrogans kdp locus, encoding homologs of the P-type ATPase KdpABC potassium transporter with their KdpD sensors and KdpE response regulators, was selected for analysis. We showed that a kdpE mutation in L. interrogans prevented the increase in kdpABC mRNA levels observed in the wild-type L. interrogans strain when external potassium levels were low. To confirm that KdpE was a positive regulator of kdpABC transcription, we developed a novel approach for constructing chromosomal genetic fusions to the endogenous bgaL (β-galactosidase) gene of the nonpathogen Leptospira biflexa. We demonstrated positive regulation of a kdpA'-bgaL fusion in L. biflexa by the L. interrogans KdpE response regulator. A control lipL32'-bgaL fusion was not regulated by KdpE. These results demonstrate the utility of genetic fusions to the bgaL gene of L. biflexa for examining leptospiral gene regulation.

摘要

钩端螺旋体病是一种潜在致命的人畜共患病,影响人类和动物。钩端螺旋体属,钩端螺旋体病的主要病原体,在其生命周期中遇到不同的条件,包括宿主内外的阶段。不幸的是,可用于检查 L. interrogans 基因表达调控的遗传工具数量有限。因此,对于控制 Leptospira 基因表达的遗传电路知之甚少。为了更好地理解钩端螺旋体基因表达的调控,选择了编码 P 型 ATP 酶 KdpABC 钾转运体及其 KdpD 传感器和 KdpE 反应调节剂同源物的 L. interrogans kdp 基因座进行分析。我们表明,L. interrogans 中的 kdpE 突变阻止了在外部钾水平较低时野生型 L. interrogans 菌株中观察到的 kdpABC mRNA 水平的增加。为了确认 KdpE 是 kdpABC 转录的正调节剂,我们开发了一种构建非致病性 Leptospira biflexa 内源 bgaL(β-半乳糖苷酶)基因的染色体遗传融合的新方法。我们证明了 L. interrogans KdpE 反应调节剂对 kdpA'-bgaL 融合的正调控。对照 lipL32'-bgaL 融合不受 KdpE 调控。这些结果表明,将遗传融合到 L. biflexa 的 bgaL 基因用于检查钩端螺旋体基因调控是有用的。

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