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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Engineered metalloregulation of azide binding affinity and reduction potential of horse heart myoglobin
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Engineered metalloregulation of azide binding affinity and reduction potential of horse heart myoglobin

机译:工程化的叠氮化物结合亲和力和马心肌红蛋白还原电位的金属调节

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Metal ion binding to a previously reported variant of horse heart myoglobin (Lys45Glu/Lys63Glu) with a metal ion binding site on the surface of the protein that is adjacent to the haem binding site has been shown to influence ligand binding and electrochemical properties of the protein. For example, the K _d (μM) for binding of azide to this variant decreases from 277 ± 9 to 32 ± 3 following addition of a saturating concentration of Mn~(2+) (the value for the wild-type protein under the same conditions is 26 ± 1). Similarly, the midpoint reduction potential E_m (mV vs. standard hydrogen electrode) increases from 9 to 40 in the presence of a saturating concentration of Mn~(2+) (the value for the wild-type protein under the same conditions is 45 ± 2). These results demonstrate the potential value of engineered metal ion binding sites as a means of regulating the functional properties of even simple haem proteins.
机译:已证明金属离子与先前报道的马心脏肌红蛋白变体(Lys45Glu / Lys63Glu)结合,在蛋白质表面上具有与血红素结合位点相邻的金属离子结合位点,会影响该配体的结合和该蛋白质的电化学性质。例如,添加饱和浓度的Mn〜(2+)后,叠氮化物与该变异体结合的K _d(μM)从277±9降低至32±3(相同条件下的野生型蛋白的值条件是26±1)。类似地,在饱和浓度Mn〜(2+)存在下,中点还原电位E_m(相对于标准氢电极的mV)从9增加到40(在相同条件下,野生型蛋白质的值为45± 2)。这些结果证明了工程化的金属离子结合位点作为调节甚至简单的血红素蛋白功能特性的手段的潜在价值。

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