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首页> 外文期刊>Journal of biological inorganic chemistry: JBIC: a publication of the Society of Biological Inorganic Chemistry >The Bacillus anthracis class Ib ribonucleotide reductase subunit NrdF intrinsically selects manganese over iron
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The Bacillus anthracis class Ib ribonucleotide reductase subunit NrdF intrinsically selects manganese over iron

机译:芽孢杆菌炭疽病核糖核苷酸还原酶亚单位NRDF本质上选择锰在铁上

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Correct protein metallation in the complex mixture of the cell is a prerequisite for metalloprotein function. While some metals, such as Cu, are commonly chaperoned, specificity towards metals earlier in the Irving-Williams series is achieved through other means, the determinants of which are poorly understood. The dimetal carboxylate family of proteins provides an intriguing example, as different proteins, while sharing a common fold and the same 4-carboxylate 2-histidine coordination sphere, are known to require either a Fe/Fe, Mn/Fe or Mn/Mn cofactor for function. We previously showed that the R2lox proteins from this family spontaneously assemble the heterodinuclear Mn/Fe cofactor. Here we show that the class Ib ribonucleotide reductase R2 protein from Bacillus anthracis spontaneously assembles a Mn/Mn cofactor in vitro, under both aerobic and anoxic conditions, when the metal-free protein is subjected to incubation with Mn-II and Fe-II in equal concentrations. This observation provides an example of a protein scaffold intrinsically predisposed to defy the Irving-Williams series and supports the assumption that the Mn/Mn cofactor is the biologically relevant cofactor in vivo. Substitution of a second coordination sphere residue changes the spontaneous metallation of the protein to predominantly form a heterodinuclear Mn/Fe cofactor under aerobic conditions and a Mn/Mn metal center under anoxic conditions. Together, the results describe the intrinsic metal specificity of class Ib RNR and provide insight into control mechanisms for protein metallation.
机译:在细胞的复杂混合物中,蛋白质金属化是金属蛋白功能的先决条件。虽然一些金属如Cu,例如Cu,通常是伴侣,但通过其他方式实现了欧文 - 威廉姆斯系列中早期的金属的特异性,其决定因素理解得很差。已知已知在共用共同折叠和相同的4羧酸盐2-组氨酸配位球体的同时提供有趣的实施例,同时共用常见的折叠和相同的4-羧酸盐2-组氨酸配位球体。对于功能。我们以前表明,来自该系列的R2LOX蛋白自发地组装异二核Mn / Fe辅因子。在这里,我们显示,当无氧蛋白质与Mn-II和Fe-II孵育时,杆菌的IB核糖核苷酸还原酶R2蛋白来自芽孢杆菌炭疽的R2蛋白在有氧和缺氧条件下自发地组装Mn / Mn辅因子。平等浓度。该观察结果提供了蛋白质脚手架的实例,该蛋白质脚手架倾斜以缩小欧文威廉姆斯系列并支持Mn / Mn辅因子是体内生物相关的辅因子的假设。第二协调球残留物的取代改变了蛋白质的自发性金属,主要在有氧条件下形成了异核Mn / Fe辅因子和缺氧条件下的Mn / Mn金属中心。结果,结果描述了IB类RNR类的内在金属特异性,并提供了对蛋白质金属化的控制机制的见解。

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