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Solution structure of a paradigm ArsR family zinc sensor in the DNA-bound state

机译:DNA结合状态下范式ArsR家族锌传感器的溶液结构

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Staphylococcus aureus CzrA is a zinc-dependent transcriptional repressor from the ubiquitous ArsR family of metal sensor proteins. Zn(II) binds to a pair of intersubunit C-terminal α5-sensing sites, some 15 A distant from the DNA-binding interface, and allosteri-cally inhibits DNA binding. This regulation is characterized by a large allosteric coupling free energy (△Gc) of approximately +6 kcal mol~(-1), the molecular origin of which is poorly understood. Here, we report the solution quaternary structure of homodimeric CzrA bound to a palindromic 28-bp czr operator, a structure that provides an opportunity to compare the two allosteric "end" states of an ArsR family sensor. Zn(II) binding drives a quaternary structural switch from a "closed" DNA-binding state to a low affinity "open" conformation as a result of a dramatic change in the relative orientations of the winged helical DNA binding domains within the dimer. Zn(ll) binding also effectively quenches both rapid and intermediate timescale internal motions of apo-CzrA while stabilizing the native state ensemble. In contrast, DNA binding significantly enhances protein motions in the allosteric sites and reduces the stability of the α5 helices as measured by H-D solvent exchange. This study reveals how changes in the global structure and dynamics drive a long-range allosteric response in a large subfamily of bacterial metal sensor proteins, and provides insights on how other structural classes of ArsR sensor proteins may be regulated by metal binding.
机译:金黄色葡萄球菌CzrA是金属传感器蛋白无处不在的ArsR家族的锌依赖性转录阻遏物。 Zn(II)结合到一对亚基C端α5感应位点,距DNA结合界面约15 A,并且变构抑制DNA结合。该调节的特征在于大的变构偶联自由能(△Gc)约为+6 kcal mol〜(-1),其分子起源尚不清楚。在这里,我们报告绑定到回文的28 bp czr运算符的同二聚体CzrA的解决方案四级结构,该结构提供了比较ArsR家庭传感器的两个变构“末端”状态的机会。由于二聚体中带翼螺旋DNA结合结构域相对方向的显着变化,Zn(II)结合将四级结构转换从“闭合” DNA结合状态变为低亲和力“开放”构象。锌(II)绑定还有效地终止了载脂蛋白CzrA的快速和中间时间尺度的内部运动,同时稳定了原始状态集合。相反,DNA结合显着增强了变构位点中的蛋白质运动,并降低了通过H-D溶剂交换测得的α5螺旋的稳定性。这项研究揭示了在细菌金属传感器蛋白的一个大亚家族中,整体结构和动力学的变化如何驱动远距离变构反应,并提供了关于如何通过金属结合调节其他结构类ArsR传感器蛋白的见解。

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