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固氮酶还原铁蛋白和[4Fe-4S]+合成类似物簇的变温磁圆二色性研究

Variable temperature magnetic circular dichroism studies of reduced nitrogenase iron proteins and [4Fe-4S]+ synthetic analog clusters.

作者信息

Onate Y A, Finnegan M G, Hales B J, Johnson M K

机构信息

Department of Chemistry, University of Georgia, Athens 30602.

出版信息

Biochim Biophys Acta. 1993 Jul 10;1164(2):113-23. doi: 10.1016/0167-4838(93)90237-l.

Abstract

Variable temperature magnetic circular dichroism (VTMCD) and EPR spectroscopies have been used to investigate the ground and excited-state properties of [4Fe-4S]+ clusters in Mo- and V-nitrogenase Fe-proteins from Azotobacter vinelandii and two synthetic analog clusters, [Fe4S4(SEt)4]3- and [Fe4S4(SC6H11)4]3-. The results indicate similar [4Fe-4S]+ clusters with analogous S = 1/2 and S = 3/2 ground states in both Fe-proteins. However, the Fe-proteins do differ in terms of the medium effects on the S = 1/2 and S = 3/2 spin mixtures in frozen solution. By utilizing medium effects in both Fe-proteins, the VTMCD characteristics of both the S = 1/2 and S = 3/2 forms of the [4Fe-4S]+ have been determined. Together with the VTMCD studies of [Fe4S4(SEt)4]3- and [Fe4S4(SC6H11)4]3-, which are shown to be predominantly S = 1/2 and 3/2, respectively, in frozen DMF/toluene solutions, the results demonstrate that the form of the VTMCD spectra provides a means of identifying and distinguishing S = 1/2 and S = 3/2 [4Fe-4S]+ clusters. Ground state zero-field splitting parameters for the S = 3/2 clusters are determined for both Fe-proteins. In addition to spin state heterogeneity, samples of the Mo-nitrogenase Fe-protein in the presence of 50% (v/v) ethylene glycol were found to exhibit heterogeneity in the S = 1/2 resonance. A rapidly relaxing axial resonance, g perpendicular = 1.94 and g parallel = 1.82, was observed in addition to the characteristic rhombic resonance, g = 2.05, 1.94 and 1.87. The origin of the heterogeneity exhibited by [4Fe-4S]+ clusters in frozen solution is discussed in light of these results.

摘要

变温磁圆二色性(VTMCD)和电子顺磁共振(EPR)光谱已被用于研究来自棕色固氮菌的钼和钒固氮酶铁蛋白中[4Fe-4S]+簇的基态和激发态性质,以及两个合成类似物簇[Fe4S4(SEt)4]3-和[Fe4S4(SC6H11)4]3-。结果表明,两种铁蛋白中具有类似的[4Fe-4S]+簇,其基态类似,分别为S = 1/2和S = 3/2。然而,在冷冻溶液中,两种铁蛋白在介质对S = 1/2和S = 3/2自旋混合物的影响方面确实存在差异。通过利用两种铁蛋白中的介质效应,已确定了[4Fe-4S]+的S = 1/2和S = 3/2形式的VTMCD特征。连同对[Fe4S4(SEt)4]3-和[Fe4S4(SC6H11)4]3-的VTMCD研究(结果表明在冷冻的N,N-二甲基甲酰胺/甲苯溶液中它们分别主要为S = 1/2和S = 3/2),这些结果表明VTMCD光谱的形式提供了一种识别和区分S = 1/2和S = 3/2 [4Fe-4S]+簇的方法。已确定了两种铁蛋白中S = 3/2簇的基态零场分裂参数。除了自旋态异质性外,发现在50%(v/v)乙二醇存在下的钼固氮酶铁蛋白样品在S = 1/2共振中表现出异质性。除了特征性的菱形共振g = 2.05、1.94和1.87外,还观察到一个快速弛豫的轴向共振,g⊥ = 1.94和g∥ = 1.82。根据这些结果讨论了冷冻溶液中[4Fe-4S]+簇表现出的异质性的起源。

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