Division of Environmental and Biomolecular Systems, Oregon Health and Science University, 20000 Northwest Walker Road, Beaverton, Oregon 97006-8921, United States.
Biochemistry. 2011 Feb 15;50(6):1023-8. doi: 10.1021/bi1015315. Epub 2011 Jan 20.
DevS and DosT from Mycobacterium tuberculosis (MTB) are paralogous heme-based sensor kinases that respond to hypoxia and to low concentrations of nitric oxide (NO). Both proteins work with the response regulator DevR as a two-component regulatory system to induce the dormancy regulon in MTB. While DevS and DosT are inactive when dioxygen is bound to the heme Fe(II) at their sensor domain, autokinase activity is observed in their heme Fe(II)-NO counterparts. To date, the conversion between active and inactive states and the reactivity of the heme-oxy complex toward NO have not been investigated. Here, we use stopped-flow UV-vis spectroscopy and rapid freeze quench resonance Raman spectroscopy to probe these reactions in DevS. Our data reveal that the heme-O(2) complex of DevS reacts efficiently with NO to produce nitrate and the oxidized Fe(III) heme through an NO dioxygenation reaction that parallels the catalytic reactions of bacterial flavohemoglobin and truncated hemoglobins. Autophosphorylation activity assays show that the Fe(III) heme state of DevS remains inactive but exhibits a high affinity for NO and forms an Fe(III)-NO complex that is readily reduced by ascorbate, a mild reducing agent. On the basis of these results, we conclude that upon exposure to low NO concentrations, the inactive oxy-heme complex of DevS is rapidly converted to the Fe(II)-NO complex in the reducing environment of living cells and triggers the initiation of dormancy.
结核分枝杆菌 (MTB) 的 DevS 和 DosT 是同源的血红素基感应激酶,可响应缺氧和低浓度的一氧化氮 (NO)。这两种蛋白与应答调节剂 DevR 一起作为双组分调控系统,诱导 MTB 进入休眠调控子。当双氧结合到它们的感应器域中的血红素 Fe(II) 时,DevS 和 DosT 是无活性的,而在血红素 Fe(II)-NO 对应物中观察到自激酶活性。迄今为止,活性和非活性状态之间的转换以及血红素-氧复合物对 NO 的反应性尚未被研究。在这里,我们使用停流紫外可见光谱和快速冷冻淬火共振拉曼光谱来探测 DevS 中的这些反应。我们的数据表明,DevS 的血红素-O2 复合物与 NO 反应效率很高,通过类似于细菌黄素血红蛋白和截断血红蛋白的催化反应,生成硝酸盐和氧化的 Fe(III)血红素。自动磷酸化活性测定表明,DevS 的 Fe(III)血红素状态仍然无活性,但对 NO 具有高亲和力,并形成易于被抗坏血酸还原的 Fe(III)-NO 复合物,抗坏血酸是一种温和的还原剂。基于这些结果,我们得出结论,在暴露于低浓度的 NO 下,DevS 的非活性氧血红素复合物在活细胞的还原环境中迅速转化为 Fe(II)-NO 复合物,并触发休眠的启动。