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结核分枝杆菌的DevS传感器激酶同源物Rv2027c与DevR反应调节因子之间的相互作用。

Cross talk between DevS sensor kinase homologue, Rv2027c, and DevR response regulator of Mycobacterium tuberculosis.

作者信息

Saini Deepak Kumar, Malhotra Vandana, Tyagi Jaya Sivaswami

机构信息

Department of Biotechnology, All India Institute of Medical Sciences, Ansari Nagar, New Delhi 110029, India.

出版信息

FEBS Lett. 2004 May 7;565(1-3):75-80. doi: 10.1016/j.febslet.2004.02.092.

Abstract

Rv2027c is a putative orphan histidine sensor kinase that bears strong homology to DevS of the hypoxia-responsive DevR-DevS two-component system in M. tuberculosis. The cytosolic C-terminal domain of Rv2027c protein (Rv2027c(194)) was overexpressed in E. coli and biochemically characterized. Rv2027c(194) underwent autophosphorylation at a conserved His(392) residue and engaged in phosphotransfer with DevR response regulator. The rates of autophosphorylation and the stabilities of the phosphorylated species were broadly similar in Rv2027c and DevS. However, unlike DevS, Rv2027c utilized Ca(2+) as an alternative divalent ion during autophosphorylation. In contrast to DevS which completed phosphotransfer to DevR in 5-10 min, phosphotransfer from Rv2027c approximately P was only partial at 30 min. Unlike devS transcription that was hypoxia-responsive, Rv2027c transcript levels were not upregulated from basal levels during hypoxia. The differential regulation of devS and Rv2027c genes, the ability of Rv2027c to utilize Ca(2+) as a divalent cation in autophosphorylation at physiological concentrations and to engage in phosphotransfer with DevR suggests that the DevR regulon could be modulated by more than one environmental cue relayed through DevS and Rv2027c.

摘要

Rv2027c是一种假定的孤儿组氨酸传感激酶,与结核分枝杆菌中缺氧反应性DevR-DevS双组分系统的DevS具有高度同源性。Rv2027c蛋白的胞质C末端结构域(Rv2027c(194))在大肠杆菌中过表达并进行了生化特性分析。Rv2027c(194)在保守的His(392)残基处发生自磷酸化,并与DevR反应调节因子进行磷酸转移。Rv2027c和DevS的自磷酸化速率以及磷酸化物种的稳定性大致相似。然而,与DevS不同,Rv2027c在自磷酸化过程中利用Ca(2+)作为替代二价离子。与在5-10分钟内完成向DevR的磷酸转移的DevS相反,30分钟时从Rv2027c约P的磷酸转移仅为部分转移。与对缺氧有反应的devS转录不同,缺氧期间Rv2027c转录水平未从基础水平上调。devS和Rv2027c基因的差异调节、Rv2027c在生理浓度下自磷酸化时利用Ca(2+)作为二价阳离子并与DevR进行磷酸转移的能力表明,DevR调控子可能由通过DevS和Rv2027c传递的多种环境信号调节。

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