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水合电子对卟啉细胞色素c的还原作用以及随后还原型卟啉细胞色素c向高铁细胞色素c的电子转移反应。

The reduction of porphyrin cytochrome c by hydrated electrons and the subsequent electron transfer reaction from reduced porphyrin cytochrome c to ferricytochrome c.

作者信息

de Kok J, Butler J, Braams R, van Gelder B F

出版信息

Biochim Biophys Acta. 1977 May 11;460(2):290-8. doi: 10.1016/0005-2728(77)90215-8.

Abstract
  1. Hydrated electrons, produced by pulse radiolysis react with porphyrin cytochrome c with a bimolecular rate constant of 3-10(10) M-1 S-1 at 21 degrees C and pH 7.4. 2. After the reduction step an absorbance change with a half-life of 5 microns is observed with the spectral range of 430-470 nm. A relatively stable intermediate then decays with a half-life of 15 s. 3. The spectrum of the intermediate observed 50 microns after the generation of hydrated electrons shows a broad absorption band between 600 and 700 nm and a peak at 408 nm. The spectrum is attributed to the protonated form of an initially produced porphyrin anion radical. 4. Reduced porphyrin cytochrome c reacts with ferricytochrome c with a bimolecular constant of 2-10(5) M-1- S-1 in 2 mM phosphate pH 7.4, at 21 degrees C and of 2 - 10(6) M-1-S-1 under the same conditions but at 1 M ionic strength. It is proposed that electron transfer in an analogous exchange reaction between ferrocytochrome c and ferricytochrome c occurs via the exposed part of the haem.
摘要
  1. 脉冲辐解产生的水合电子与卟啉细胞色素c反应,在21℃和pH 7.4条件下,双分子速率常数为3×10¹⁰ M⁻¹ s⁻¹。2. 还原步骤之后,在430 - 470 nm光谱范围内观察到吸光度变化,半衰期为5微秒。然后,一种相对稳定的中间体以15秒的半衰期衰减。3. 在水合电子产生50微秒后观察到的中间体光谱显示,在600至700 nm之间有一个宽吸收带,在408 nm处有一个峰。该光谱归因于最初产生的卟啉阴离子自由基的质子化形式。4. 在2 mM磷酸盐、pH 7.4、21℃条件下,还原型卟啉细胞色素c与高铁细胞色素c反应,双分子常数为2×10⁵ M⁻¹ s⁻¹,在相同条件但离子强度为1 M时,双分子常数为2×10⁶ M⁻¹ s⁻¹。有人提出,亚铁细胞色素c和高铁细胞色素c之间类似交换反应中的电子转移是通过血红素的暴露部分发生的。

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