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首页> 外文期刊>Biochemistry >Negatively Charged Residues and Hydrogen Bonds Tune the Ligand Histidine pK_a Values of Rieske Iron-Sulfur Proteins
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Negatively Charged Residues and Hydrogen Bonds Tune the Ligand Histidine pK_a Values of Rieske Iron-Sulfur Proteins

机译:带负电荷的残基和氢键调节Rieske铁硫蛋白的配体组氨酸pK_a值

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摘要

Rieske proteins carry a redox-active iron-sulfur cluster,which is bound by two histidine and two cysteine side chains.The reduction potential of Rieske proteins depends on pH.This pH dependence can be described by two pK_a values,which have been assigned to the two iron-coordinating histidines.Rieske proteins are commonly grouped into two major classes:Rieske proteins from quinol-oxidizing cytochrome bc complexes,in which the ligand histidines titrate in the physiological pH range,and bacterial ferredoxin Rieske proteins,in which the ligand histidines are protonated at physiological pH.In the study presented here,we have calculated pK_a values of the cluster ligand histidines using a combined density functional theory/continuum electrostatics approach.Experimental pK_a values for a bc-type and a ferredoxin Rieske protein could be reproduced.We could identify functionally important differences between the two proteins:hydrogen bonds toward the cluster,which are present in bc-type Rieske proteins,and negatively charged residues,which are present in ferredoxin Rieske proteins.We removed these differences by mutating the proteins in our calculations.The Rieske centers in the mutated proteins have very similar pK_a values.We thus conclude that the studied structural differences are the main reason for the different pH-titration behavior of the proteins.Interestingly,the shift caused by neutralizing the negative charges in ferredoxin Rieske proteins is larger than the shift caused by removing the hydrogen bonds toward the cluster in fee-type Rieske proteins.
机译:Rieske蛋白带有氧化还原活性的铁硫簇,由两个组氨酸和两个半胱氨酸侧链结合。Rieske蛋白的还原电位取决于pH值。pH依赖性可以通过两个pK_a值来描述,这些值已被分配为Rieske蛋白通常分为两大类:来自奎宁氧化的细胞色素bc复合物的Rieske蛋白(其中配体组氨酸在生理pH范围内滴定)和细菌铁氧还蛋白Rieske蛋白(其中配体组氨酸)在生理pH下质子化。在本文介绍的研究中,我们使用组合的密度泛函理论/连续谱静电方法计算了簇配体组氨酸的pK_a值。可以复制bc型和铁氧还蛋白Rieske蛋白的实验pK_a值。我们可以确定两种蛋白质在功能上的重要区别:朝向簇的氢键,存在于bc型Rieske中铁氧还蛋白Rieske蛋白中存在蛋白质和带负电荷的残基。我们通过在计算中对蛋白质进行突变来消除这些差异。突变蛋白质中的Rieske中心具有非常相似的pK_a值。因此,我们得出结论,所研究的结构差异是有趣的是,中和铁氧还蛋白Rieske蛋白质中负电荷引起的位移大于去除费型Rieske蛋白质中向簇的氢键引起的位移。

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