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细胞色素c氧化酶中铜的线形的电子顺磁共振研究。

An EPR study of the lineshape of copper in cytochrome c oxidase.

作者信息

Greenaway F T, Chan S H, Vincow G

出版信息

Biochim Biophys Acta. 1977 Jan 25;490(1):62-78. doi: 10.1016/0005-2795(77)90106-4.

Abstract

The EPR spectrum of copper in cytochrome c oxidase (EC 1.9.3.1) has been studied between 5 and 220 degreesK, and the spectral parameters have been determined for both forms of EPR-detectable copper by computer simulation methods. Numerical methods have been developed to separate the spectra of intrinsic copper and inactive copper. Evidence is presented to show that inactive copper is probably formed by denaturation. The EPR parameters for intrinsic copper were determined as gx = 1.99, gy = 2.03, gz = 2.185, / Ax(Cu) / = 0.0020 cm-1, / Ay(Cu) / = 0.0025 cm-1, / Az(Cu) / = 0.0030 cm-1. The principal values of the g tensor and the small value of /Az(Cu) / are interpreted in terms of mixing of 3d, 4s, and 4p metal orbitals. A flattened-tetrahedral stereochemistry about Cu2+ with an additional rhombic distrotion is in best agreement with all of the data. The peak-to-peak linewidth is found to be orientation dependent, and is described by a tensor with principal values deltaHx = 45G, deltaHy = 65 G, deltaHz = 85 G. A weak dipolar interaction with a low-spin ferric species stereochemistry for the copper ion is consistent with the electron transport function of the enzyme. Broad EPR signals with a very short spin-lattice relaxation time has been observed near g = 14 and g = 3 at 5 degrees K in oxidized cytochrome oxidase but not in the reduced or denatured enzyme. The possibility that these are due to the "EPR-undetectable" iron and copper is raised.

摘要

在5至220开尔文温度范围内研究了细胞色素c氧化酶(EC 1.9.3.1)中铜的电子顺磁共振(EPR)谱,并通过计算机模拟方法确定了两种EPR可检测铜形式的光谱参数。已开发出数值方法来分离固有铜和非活性铜的光谱。有证据表明非活性铜可能是由变性形成的。固有铜的EPR参数确定为gx = 1.99,gy = 2.03,gz = 2.185,/Ax(Cu)/ = 0.0020 cm-1,/Ay(Cu)/ = 0.0025 cm-1,/Az(Cu)/ = 0.0030 cm-1。g张量的主值和/Az(Cu)/的小值是根据3d、4s和4p金属轨道的混合来解释的。与所有数据最相符的是围绕Cu2+的扁平四面体立体化学结构,并伴有额外的菱形畸变。发现峰-峰线宽与取向有关,并由主值为deltaHx = 45G、deltaHy = 65 G、deltaHz = 85 G的张量描述。铜离子与低自旋铁物种立体化学的弱偶极相互作用与该酶的电子传递功能一致。在5开尔文时,在氧化型细胞色素氧化酶中于g = 14和g = 3附近观察到具有非常短的自旋-晶格弛豫时间的宽EPR信号,但在还原型或变性酶中未观察到。有人提出这些信号可能是由于“EPR不可检测”的铁和铜所致。

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