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首页> 外文期刊>Journal of Molecular Biology >A Metal-Ligand-mediated Intersubunit Allosteric Switch in Related SmtB/ArsR Zinc Sensor Proteins.
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A Metal-Ligand-mediated Intersubunit Allosteric Switch in Related SmtB/ArsR Zinc Sensor Proteins.

机译:相关的SmtB / ArsR锌传感器蛋白中的金属配体介导的亚基变构开关。

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摘要

The origin of metal ion selectivity by members of the SmtB/ArsR family of bacterial metal-sensing transcriptional repressors and the mechanism of negative allosteric regulation of DNA binding is poorly understood. Here, we report that two homologous zinc sensors, Staphylococcus aureus CzrA and cyanobacterial SmtB, are "winged" helix homodimeric DNA-binding proteins that bind Zn(II) to a pair of tetrahedral, interhelical binding sites, with two ligands derived from the alpha5 helix of one subunit, Asp84 O(delta1) (Asp104 in SmtB), His86 N(delta1) (His106), and two derived from the alpha5 helix of the other, His97' N(delta1) (His117') and His100' N(epsilon2) (Glu120'). Formation of the metal chelate drives a quaternary structural switch mediated by an intersubunit hydrogen-binding network that originates with the non-liganding N(epsilon2) face of His97 in CzrA (His117 in SmtB) that stabilizes a low-affinity, DNA-binding conformation. The structure of the Zn(1) SmtB homodimer shows that both metal-bindingsites of the dimer must be occupied for the quaternary structural switch to occur. Thus, a critical zinc-ligating histidine residue obligatorily couples formation of the metal-sensing coordination chelate to changes in the conformation and dynamics of the putative DNA-binding helices.
机译:SmtB / ArsR家族的细菌金属感性转录阻遏物对金属离子选择性的起因以及对DNA结合的负变构调节的机理了解甚少。在这里,我们报告两个同源锌传感器,金黄色葡萄球菌CzrA和蓝细菌SmtB,是“有翅”螺旋同二聚体DNA结合蛋白,可将Zn(II)结合到一对四面体,螺旋间结合位点,两个配体来自alpha5一个亚基的螺旋,Asp84 O(delta1)(SmtB中为Asp104),His86 N(delta1)(His106),两个衍生自另一个亚基的alpha5螺旋,His97'N(delta1)(His117')和His100'N (ε2)(Glu120')。金属螯合物的形成驱动亚单位氢结合网络介导的四级结构转换,该氢结合网络起源于CzrA中His97的非配体N(epsilon2)面(SmtB中的His117),可稳定低亲和力的DNA结合构象。 。 Zn(1)SmtB同型二聚体的结构表明二聚体的两个金属结合位点都必须被占据,才能发生四级结构转换。因此,关键的锌连接组氨酸残基强制性地将金属感测配位螯合物的形成与假定的DNA结合螺旋的构象和动力学变化相结合。

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