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基于扩展X射线吸收精细结构光谱结果对酵母超氧化物歧化酶中金属几何结构的一项提议。

A proposal for the metal geometry in yeast superoxide dismutase based on results from EXAFS spectroscopy.

作者信息

Phillips J C, Bauer R, Dunbar J, Johansen J T

出版信息

J Inorg Biochem. 1984 Nov;22(3):179-86. doi: 10.1016/0162-0134(84)80027-6.

Abstract

Extended x-ray absorption fine structure (EXAFS) spectra have been recorded at the Cu edge and Zn edge in native yeast superoxide dismutase and at the Cu edge and Cd edge in the yeast superoxide dismutase derivative, where Zn has been substituted with Cd. Two different metal ligand distances in the range 1.9-2.0 A and 2.3-2.4 are determined for the Cu and Zn metals. For Cd in the Zn site two different metal ligand distances about 2.2 A and 2.6 A, respectively, were found. The striking feature is the similarity between the amplitude and radii determined for both the Cu and Zn sites. The increased distances for Cd can be explained by the increased ionic radius of Cd relative to Cu and Zn. Based on these EXAFS results and other relevant knowledge about the metal geometries, we propose that histidine 61 (63) positioned between the Cu and Zn metals are in one subunit bound to Zn and in the other to Cu. This model explains the recently observed difference between the two metal sites in each subunit.

摘要

已记录了天然酵母超氧化物歧化酶中铜边缘和锌边缘的扩展X射线吸收精细结构(EXAFS)光谱,以及酵母超氧化物歧化酶衍生物(其中锌已被镉取代)中铜边缘和镉边缘的EXAFS光谱。对于铜和锌金属,确定了1.9 - 2.0 Å和2.3 - 2.4 Å范围内的两种不同金属配体距离。对于锌位点中的镉,分别发现了约2.2 Å和2.6 Å的两种不同金属配体距离。显著特征是为铜和锌位点确定的振幅和半径之间的相似性。镉距离的增加可以用镉相对于铜和锌增加的离子半径来解释。基于这些EXAFS结果以及关于金属几何结构的其他相关知识,我们提出位于铜和锌金属之间的组氨酸61(63)在一个亚基中与锌结合,在另一个亚基中与铜结合。该模型解释了最近在每个亚基中观察到的两个金属位点之间的差异。

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