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亚铬离子对羧甲基细胞色素c的还原作用。

The reduction of carboxymethyl-cytochrome c by chromous ions.

作者信息

Brittain T, Wilson M T, Greenwood C

出版信息

Biochem J. 1974 Aug;141(2):455-61. doi: 10.1042/bj1410455.

Abstract

The reduction of ferricytochrome c and ferricytochrome c carboxymethylated at the haem-linked methionine (residue 80) by Cr(2+) ions was studied by stopped-flow techniques. At pH6.2 the kinetics of reduction of ferricytochrome c are simple and correspond to a second-order rate constant of 1.21x10(3)m(-1).s(-1). Under identical conditions the kinetics of reduction of the carboxymethyl derivative, carboxymethyl-cytochrome c, are complex; two Cr(2+)-concentration-dependent processes (1.5x10(4)m(-1).s(-1) and 1.3x10(3)m(-1).s(-1)) lead to the formation of an intermediate which decays in monomolecular fashion (0.15s(-1)) to form the normal fully reduced material. The kinetic difference spectrum for the overall process corresponds to that found statically, whereas the kinetic difference spectrum of the intermediate minus the oxidized form resembles that of the low-spin ferrous form of carboxymethyl-cytochrome c minus oxidized carboxymethyl-cytochrome c. A model is proposed in which the reduction of low-spin ferric carboxymethyl-cytochrome c to high-spin ferrous carboxymethyl-cytochrome c involves a low-spin ferrous intermediate. The monomolecular step involving the decay of this low-spin ferrous intermediate is associated with an activation energy of approx. 126kJ.mol(-1) and is thought to involve both a change of spin state and a protein-conformational event. Although carboxymethyl-cytochrome c represents a mixture of species separable on a charge basis, the above observations were independent of which species was chosen for study.

摘要

采用停流技术研究了Cr(2+)离子对高铁细胞色素c以及在血红素连接的甲硫氨酸(第80位残基)处羧甲基化的高铁细胞色素c的还原作用。在pH6.2时,高铁细胞色素c的还原动力学很简单,对应二级速率常数为1.21×10(3)m(-1).s(-1)。在相同条件下,羧甲基衍生物羧甲基细胞色素c的还原动力学很复杂;两个依赖于Cr(2+)浓度的过程(1.5×10(4)m(-1).s(-1)和1.3×10(3)m(-1).s(-1))导致形成一种中间体,该中间体以单分子方式衰减(0.15s(-1))以形成正常的完全还原物质。整个过程的动力学差异光谱与静态观察到的光谱一致,而中间体减去氧化形式的动力学差异光谱类似于羧甲基细胞色素c的低自旋亚铁形式减去氧化羧甲基细胞色素c的光谱。提出了一个模型,其中低自旋高铁羧甲基细胞色素c还原为高自旋亚铁羧甲基细胞色素c涉及一个低自旋亚铁中间体。涉及该低自旋亚铁中间体衰减的单分子步骤的活化能约为126kJ.mol(-1),并且被认为涉及自旋状态的变化和蛋白质构象事件。尽管羧甲基细胞色素c代表了基于电荷可分离的物种混合物,但上述观察结果与选择研究哪种物种无关。

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FEBS Lett. 1971 Mar 16;13(4):221-224. doi: 10.1016/0014-5793(71)80540-9.

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