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An outer-sphere hydrogen-bond network constrains copper coordination in blue proteins [Review]

机译:外球氢键网络在蓝蛋白中约束铜协调[评论]

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摘要

In azurins and other blue copper proteins with relatively low reduction potentials (E-0 [Cu-II/Cu-I]<400 mV vs. normal hydrogen electrode), the folded polypeptide framework constrains both copper(II) and copper(I) in such a way as to tune the reduction potentials to values that differ greatly from those for most copper complexes. Largely conserved networks of hydrogen bonds organize and lock the rest of the folded protein structure to a loop that contains three of the ligands to copper. Changes in hydrogen bonds that allow copper(I) to revert more closely to its preferred geometry [relative to the copper(II) geometry] accordingly lead to an increase in E-0. This paper reports mutations in the ligand loop of amicyanin from P. denitrificans that relax the constraints on ligation for copper(I) and significantly raise E-0 for these mutants (for example 415+/-4 mV) relative to that of the native amicyanin (265 4 mV). These mutations also shift the pK(a) of a ligand histidine to below 5 relative to 7.0 in the wild type.
机译:在硫辛和其他具有相对低的减少电位的蓝铜蛋白(E-0 [Cu-II / Cu-1] <400mV与正常氢电极)中,折叠的多肽框架约束铜(II)和铜(I)以这种方式调整降低电位的值,从大多数铜复合物中均有很大差异的值。大量保守的氢键网络组织并将其余的折叠蛋白质结构锁定在含有三个配体的环上。因此,允许铜(I)更接近其优选的几何形状的氢键的变化相应地导致E-0的增加。本文报告了来自P. Denitifificans的氨基蛋白素的配体环中的突变,其放松了铜(I)的连接上的约束,并显着为这些突变体(例如415 +/- 4 mV)相对于天然的e-0升高amicyanin(265 4 mV)。这些突变还将配体组氨酸的PK(a)移至野生型中的7.0以下。

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