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利用吸收光谱、圆二色光谱和电子顺磁共振光谱对巴西固氮螺菌谷氨酸合酶的黄素和铁硫中心进行表征。

Characterization of the flavins and the iron-sulfur centers of glutamate synthase from Azospirillum brasilense by absorption, circular dichroism, and electron paramagnetic resonance spectroscopies.

作者信息

Vanoni M A, Edmondson D E, Zanetti G, Curti B

机构信息

Dipartimento di Fisiologia e Biochimica Generali, Università degli Studi di Milano, Italy.

出版信息

Biochemistry. 1992 May 19;31(19):4613-23. doi: 10.1021/bi00134a011.

Abstract

Azospirillum brasilense glutamate synthase has been studied by absorption, electron paramagnetic resonance, and circular dichroism spectroscopies in order to determine the type and number of iron-sulfur centers present in the enzyme alpha beta protomer and to gain information on the role of the flavin and iron-sulfur centers in the catalytic mechanism. The FMN and FAD prosthetic groups are demonstrated to be non-equivalent with respect to their reactivities with sulfite. Sulfite reacts with only one of the two flavins forming an N(5)-sulfite adduct with a Kd of approximately 1 mM. The enzyme-sulfite complex is reduced by NADPH, and the complexed sulfite is competitively displaced by 2-oxoglutarate, which suggests the reactive flavin to be at the imine-reducing site. These data are in agreement with the two-site model of the enzyme active center proposed on the basis of kinetic studies [Vanoni, M.A., Nuzzi, L., Rescigno, M., Zanetti, G., & Curti, B. (1991) Eur. J. Biochem. 202, 181-189]. Each enzyme protomer was found, by chemical analysis, to contain 12.1 +/- 0.5 mol of non-heme iron. Electron paramagnetic resonance spectroscopic studies on the oxidized and reduced forms of glutamate synthase demonstrated the presence of three distinct iron-sulfur centers per enzyme protomer. The oxidized enzyme exhibits an axial spectrum with g values at 2.03 and 1.97, which is highly temperature-dependent and integrates to 1.1 +/- 0.2 spin/protomer. This signal is assigned to a [3Fe-4S]1+ cluster (Fe-S)I. Reduction of the enzyme with an NADPH-regenerating system results in reduction of the [3Fe-4S]1+ center to a species with a g approximately 12 signal characteristic of the S = 2 spin state of a [3Fe-4S]0 cluster. The NADPH-reduced enzyme also exhibits an [Fe-S] signal at g values of 1.98, 1.95, and 1.88, which integrates to 0.9 spin/protomer and is due to a second cluster (Fe-S)II. Reduction of the enzyme with the light/deazaflavin method results in a signal characteristic of [Fe-S] clusters with g values of 2.03, 1.92, and 1.86 and an integrated intensity of 1.9 spin/protomer. This signal arises from reduction of the (Fe-S)II center and from that of the third, lower potential iron-sulfur center (Fe-S)III. Circular dichroism spectral data on the oxidized and reduced forms of the enzyme are more consistent with the assignment of (Fe-S)II and (Fe-S)III as [4Fe-4S] clusters rather than [2Fe-2S] centers.

摘要

为了确定巴西固氮螺菌谷氨酸合酶αβ原聚体中存在的铁硫中心的类型和数量,并获取有关黄素和铁硫中心在催化机制中作用的信息,对其进行了吸收光谱、电子顺磁共振光谱和圆二色光谱研究。结果表明,FMN和FAD辅基与亚硫酸盐的反应性不同。亚硫酸盐仅与两个黄素中的一个反应,形成N(5)-亚硫酸盐加合物,解离常数Kd约为1 mM。该酶-亚硫酸盐复合物可被NADPH还原,且复合物中的亚硫酸盐可被2-氧代戊二酸竞争性取代,这表明具有反应活性的黄素位于亚胺还原位点。这些数据与基于动力学研究提出的酶活性中心的双位点模型一致[Vanoni, M.A., Nuzzi, L., Rescigno, M., Zanetti, G., & Curti, B. (1991) Eur. J. Biochem. 202, 181 - 189]。通过化学分析发现,每个酶原聚体含有12.1±0.5摩尔的非血红素铁。对谷氨酸合酶氧化态和还原态的电子顺磁共振光谱研究表明,每个酶原聚体存在三个不同的铁硫中心。氧化态的酶呈现轴向光谱,g值分别为2.03和1.97,该光谱高度依赖温度,积分强度为1.1±0.2自旋/原聚体。该信号归属于[3Fe - 4S]1+簇(Fe - S)I。用NADPH再生系统还原该酶会导致[3Fe - 4S]1+中心还原为具有g≈12信号的物种,该信号特征为[3Fe - 4S]0簇的S = 2自旋态。NADPH还原的酶在g值为1.98、1.95和1.88处还呈现一个[Fe - S]信号,积分强度为0.9自旋/原聚体,这是由于第二个簇(Fe - S)II引起的。用光/脱氮黄素法还原该酶会产生[Fe - S]簇的信号特征,g值为2.03、1.92和1.86,积分强度为1.9自旋/原聚体。该信号来自(Fe - S)II中心以及第三个低电位铁硫中心(Fe - S)III的还原。该酶氧化态和还原态的圆二色光谱数据更符合将(Fe - S)II和(Fe - S)III归为[4Fe - 4S]簇而非[2Fe - 2S]中心的归属。

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