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硫化物对细胞色素aa3的影响。还原型α峰的等排和别构位移。

The effect of sulphide on cytochrome aa3. Isosteric and allosteric shifts of the reduced alpha-peak.

作者信息

Nicholls P

出版信息

Biochim Biophys Acta. 1975 Jul 8;396(1):24-35. doi: 10.1016/0005-2728(75)90186-3.

Abstract
  1. Sulphide, like cyanide, is a slow-binding inhibitor of cytochrome aa3 with a high affinity (KD smaller than 0.1 MUM). 2. Unlike cyanide binding, the binding of sulphide is apparently independent of the redox state of components of the oxidase other than cytochrome a3 and shows no anomalous kinetics during complex formation. 3. Sulphide binding to cytochrome a3-3+ is accompanied by a blue-shift in the alpha-peak of the reduced enzyme (a-2+ a3-3+ H2S), similar to but smaller than that induced by azide. 4. The reduced sulphide-inhibited system shows a much higher Soret peak at 445 nm than the corresponding cyanide and azide complexes, suggesting that partial electron transfer from sulphide to haem may occur in the complex. No evidence was obtained for the formation of any sulfhaem derivatives of cytochrome a3. 5. The influence of energization on the spectrum of mitochondrial cytochrome oxidase, and the effects of calcium on the alpha-peak of isolated cytochrome aa3 (Wikström, M.K.F. (1974) Ann. N.Y. Acad. Sci. 227, 146-158) are distinct from the action of the cytochrome a3 ligands. 6. A classification of peak shifts in the alpha-region in terms of isosteric and allosteric ligands is proposed.
摘要
  1. 硫化物与氰化物一样,是细胞色素aa3的慢结合抑制剂,具有高亲和力(解离常数KD小于0.1 μM)。2. 与氰化物结合不同,硫化物的结合显然与除细胞色素a3之外的氧化酶组分的氧化还原状态无关,并且在复合物形成过程中没有显示出异常动力学。3. 硫化物与细胞色素a3-3+的结合伴随着还原酶(a-2+ a3-3+ H2S)α峰的蓝移,类似于但小于叠氮化物诱导的蓝移。4. 还原的硫化物抑制系统在445 nm处的Soret峰比相应的氰化物和叠氮化物复合物高得多,这表明在复合物中可能发生从硫化物到血红素的部分电子转移。未获得细胞色素a3任何硫血红蛋白衍生物形成的证据。5. 线粒体细胞色素氧化酶光谱的能量化影响以及钙对分离的细胞色素aa3α峰的影响(维克斯特伦,M.K.F.(1974年)《纽约科学院学报》227卷,第146 - 158页)与细胞色素a3配体的作用不同。6. 提出了根据等排体和别构配体对α区域峰位移进行分类的方法。

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