首页> 外文期刊>Journal of Inorganic Biochemistry: An Interdisciplinary Journal >Electron transfer between cytochrome b(5) and some oxidised haemoglobins: the role of ionic strength
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Electron transfer between cytochrome b(5) and some oxidised haemoglobins: the role of ionic strength

机译:细胞色素b(5)与某些氧化血红蛋白之间的电子转移:离子强度的作用

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摘要

We have compared experimental measurements and Brownian dynamic calculations for the reduction of oxidised adult human haemoglobin by reduced bovine cytochrome b(5) over a range of ionic strengths. Our calculations suggest that the presence of molecular electrostatic fields have a significant role to play in the formation of the electron transfer complexes. These results predict that electron transfer Occurs within an ensemble of similarly weakly clocked complexes. the formation of which is strongly ionic strength dependent. Application of electron tunneling analysis to the complexes allows us to predict the rates of electron transfer within each ensemble of complexes as a function of ionic strength. The outcome of this theoretical study is compared with experimental rate measurements. A comparison of the results obtained from adult and embryonic haemoglobins, at a fixed ionic strength. indicates a significant difference in the characteristics of complex formation, These data emphasise the role played by electrostatic interactions in this important physiological reaction,
机译:我们比较了在一定离子强度下通过减少牛细胞色素b(5)减少氧化成年人类血红蛋白的实验测量和布朗动力学计算。我们的计算表明,分子静电场的存在在电子转移络合物的形成中起着重要作用。这些结果表明,电子转移发生在类似弱时钟的复合体中。其形成强烈依赖于离子强度。将电子隧穿分析应用于络合物使我们能够预测络合物每个集合内电子转移的速率与离子强度的关系。将该理论研究的结果与实验速率测量结果进行比较。在固定的离子强度下,从成年和胚胎血红蛋白获得的结果的比较。表示复合物形成特征存在显着差异。这些数据强调了静电相互作用在这一重要的生理反应中所起的作用,

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