首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Mechanism of metal ion activation of the diphtheria toxin repressor DtxR.
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Mechanism of metal ion activation of the diphtheria toxin repressor DtxR.

机译:白喉毒素阻遏物DtxR的金属离子活化机理。

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摘要

The diphtheria toxin repressor (DtxR) is a metal ion-activated transcriptional regulator that has been linked to the virulence of Corynebacterium diphtheriae. Structure determination has shown that there are two metal ion binding sites per repressor monomer, and site-directed mutagenesis has demonstrated that binding site 2 (primary) is essential for recognition of the target DNA repressor, leaving the role of binding site 1 (ancillary) unclear. Calorimetric techniques have demonstrated that although binding site 1 (ancillary) has high affinity for metal ion with a binding constant of 2 x 10(-7), binding site 2 (primary) is a low-affinity binding site with a binding constant of 6.3 x 10(-4). These two binding sites act in an independent fashion, and their contribution can be easily dissected by traditional mutational analysis. Our results clearly demonstrate that binding site 1 (ancillary) is the first one to be occupied during metal ion activation, playing a critical role in stabilization of the repressor. In addition, structural data obtained for the mutants Ni-DtxR(H79A,C102D), reported here, and the previously reported DtxR(H79A) have allowed us to propose a mechanism of metal activation for DtxR.
机译:白喉毒素阻遏物(DtxR)是一种金属离子激活的转录调节因子,已与白喉棒状杆菌的毒力相关。结构确定表明每个阻遏物单体有两个金属离子结合位点,并且定点诱变已证明结合位点2(主要)对于识别靶DNA阻遏物至关重要,而留下结合位点1(辅助)的作用不清楚。量热技术表明,尽管结合位点1(辅助)对金属离子具有高亲和力,结合常数为2 x 10(-7),但是结合位点2(主要)是低亲和力结合位点,结合常数为6.3 x 10(-4)。这两个结合位点以独立的方式起作用,并且它们的贡献可以通过传统的突变分析很容易地分解。我们的结果清楚地表明,结合位点1(辅助位点)是金属离子活化过程中第一个被占据的位点,在阻遏物的稳定化中起着关键作用。此外,这里报道的突变体Ni-DtxR(H79A,C102D)和先前报道的DtxR(H79A)获得的结构数据使我们提出了DtxR的金属活化机理。

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