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普通脱硫弧菌周质氢化酶的电子顺磁共振可检测氧化还原中心

EPR-detectable redox centers of the periplasmic hydrogenase from Desulfovibrio vulgaris.

作者信息

Patil D S, Moura J J, He S H, Teixeira M, Prickril B C, DerVartanian D V, Peck H D, LeGall J, Huynh B H

机构信息

Department of Physics, Emory University, Atlanta, Georgia 30322.

出版信息

J Biol Chem. 1988 Dec 15;263(35):18732-8.

PMID:2848804
Abstract

The periplasmic hydrogenase of Desulfovibrio vulgaris (Hildenbourough NCIB 8303) belongs to the category of [Fe] hydrogenase which contains only iron-sulfur clusters as its prosthetic groups. Amino acid analyses were performed on the purified D. vulgaris hydrogenase. The amino acid composition obtained compared very well with the result derived from the nucleotide sequence of the structural gene (Voordouw, G., Brenner, S. (1985) Eur. J. Biochem. 148, 515-520). Detailed EPR reductive titration studies on the D. vulgaris hydrogenase were performed to characterize the metal centers in this hydrogenase. In addition to the three previously observed EPR signals (namely, the "isotropic" 2.02 signal, the rhombic 2.10 signal, and the complex signal of the reduced enzyme), a rhombic signal with resonances at the g-values of 2.06, 1.96, and 1.89 (the rhombic 2.06 signal) was detected when the samples were poised at potentials between 0 and -250 mV (with respect to normal hydrogen electrode). The midpoint redox potentials for each of the four EPR-active species were determined, and the characteristics of each EPR signal are described. Both the rhombic 2.10 and 2.06 signals exhibit spectral properties that are distinct from a ferredoxin-type [4Fe-4S] cluster and are proposed to originate from the same H2-binding center but in two different conformations. The complex signal of the reduced hydrogenase has been shown to represent two spin-spin interacting ferredoxin-type [4Fe-4S]1+ clusters (Grande, H. J., Dunham, W. R., Averill, B., Van Dijk, C., and Sands, R. H. (1983) Eur. J. Biochem. 136, 201-207). The titration data indicated a strong cooperative effect between these two clusters during their reduction. In an effort to accurately estimate the number of iron atoms/molecule of hydrogenase, plasma emission and chemical methods were used to determine the iron contents in the samples; and four different methods, including amino acid analysis, were used for protein determination. The resulting iron stoichiometries were found to be method-dependent and vary over a wide range (+/- 20%). The uncertainties involved in the determination of iron stoichiometry are discussed.

摘要

普通脱硫弧菌(希登伯勒 NCIB 8303)的周质氢化酶属于[Fe]氢化酶类别,其仅含有铁硫簇作为辅基。对纯化的普通脱硫弧菌氢化酶进行了氨基酸分析。所得氨基酸组成与结构基因核苷酸序列推导的结果非常吻合(Voordouw, G., Brenner, S. (1985) Eur. J. Biochem. 148, 515 - 520)。对普通脱硫弧菌氢化酶进行了详细的电子顺磁共振(EPR)还原滴定研究,以表征该氢化酶中的金属中心。除了先前观察到的三个 EPR 信号(即“各向同性”的 g = 2.02 信号、菱形的 g = 2.10 信号以及还原酶的复合信号)外,当样品在 0 至 -250 mV(相对于标准氢电极)的电位下平衡时,检测到一个在 g 值为 2.06、1.96 和 1.89 处有共振的菱形信号(菱形 2.06 信号)。测定了四种 EPR 活性物种各自的中点氧化还原电位,并描述了每个 EPR 信号的特征。菱形 2.10 和 2.06 信号均表现出与铁氧化还原蛋白型[4Fe - 4S]簇不同的光谱特性,并且推测它们源自同一个 H₂结合中心,但处于两种不同构象。已证明还原氢化酶的复合信号代表两个自旋 - 自旋相互作用的铁氧化还原蛋白型[4Fe - 4S]¹⁺簇(Grande, H. J., Dunham, W. R., Averill, B., Van Dijk, C., and Sands, R. H. (1983) Eur. J. Biochem. 136, 201 - 207)。滴定数据表明这两个簇在还原过程中存在强烈的协同效应。为了准确估计氢化酶每分子中的铁原子数,使用等离子体发射和化学方法测定样品中的铁含量;并使用包括氨基酸分析在内的四种不同方法进行蛋白质测定。发现所得的铁化学计量比依赖于方法,并且在很宽的范围内变化(±20%)。讨论了铁化学计量比测定中涉及的不确定性。

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