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从脱硫脱硫弧菌中分离出的一种铁硫蛋白中新型四核铁簇的光谱表征。

Spectroscopic characterization of a novel tetranuclear Fe cluster in an iron-sulfur protein isolated from Desulfovibrio desulfuricans.

作者信息

Tavares P, Pereira A S, Krebs C, Ravi N, Moura J J, Moura I, Huynh B H

机构信息

Department of Physics, Rollins Research Building, Emory University, Atlanta, Georgia 30322, USA.

出版信息

Biochemistry. 1998 Mar 3;37(9):2830-42. doi: 10.1021/bi9723008.

Abstract

Mossbauer and EPR spectroscopies were used to characterize the Fe clusters in an Fe-S protein isolated from Desulfovibrio desulfuricans (ATCC 27774). This protein was previously thought to contain hexanuclear Fe clusters, but a recent X-ray crystallographic measurement on a similar protein isolated from Desulfovibrio vulgaris showed that the protein contains two tetranuclear clusters, a cubane-type [4Fe-4S] cluster and a mixed-ligand cluster of novel structure [Lindley et al. (1997) Abstract, Chemistry of Metals in Biological Systems, European Research Conference, Tomar, Portugal]. Three protein samples poised at different redox potentials (as-purified, 40 and 320 mV) were investigated. In all three samples, the [4Fe-4S] cluster was found to be present in the diamagnetic 2+ oxidation state and exhibited typical Mossbauer spectra. The novel-structure cluster was found to be redox active. In the 320-mV and as-purified samples, the cluster is at a redox equilibrium between its fully oxidized and one-electron reduced states. In the 40-mV sample, the cluster is in a two-electron reduced state. Distinct spectral components associated with the four Fe sites of cluster 2 in the three oxidation states were identified. The spectroscopic parameters obtained for the Fe sites reflect different ligand environments, making it possible to assign the spectral components to individual Fe sites. In the fully oxidized state, all four iron ions are high-spin ferric and antiferromagnetically coupled to form a diamagnetic S = 0 state. In the one-electron and two-electron reduced states, the reducing electrons were found to localize, consecutively, onto two Fe sites that are rich in oxygen/nitrogen ligands. Based on the X-ray structure and the Mossbauer parameters, attempts could be made to identify the reduced Fe sites. For the two-electron reduced cluster, EPR and Mossbauer data indicate that the cluster is paramagnetic with a nonzero interger spin. For the one-electron reduced cluster, the data suggest a half-integer spin of 9/2. Characteristic fine and hyperfine parameters for all four Fe sites were obtained. Structural implications and the nature of the spin-coupling interactions are discussed.

摘要

穆斯堡尔谱和电子顺磁共振谱被用于表征从脱硫脱硫弧菌(ATCC 27774)中分离出的一种铁硫蛋白中的铁簇。该蛋白先前被认为含有六核铁簇,但最近对从普通脱硫弧菌中分离出的一种类似蛋白进行的X射线晶体学测量表明,该蛋白含有两个四核簇,一个立方烷型[4Fe-4S]簇和一个具有新颖结构的混合配体簇[林德利等人(1997年)摘要,生物系统中金属的化学,欧洲研究会议,葡萄牙托马尔]。研究了处于不同氧化还原电位(纯化态、40和320 mV)的三个蛋白样品。在所有三个样品中,均发现[4Fe-4S]簇以抗磁性的2+氧化态存在,并呈现出典型的穆斯堡尔谱。发现具有新颖结构的簇具有氧化还原活性。在320 mV和纯化态样品中,该簇处于其完全氧化态和单电子还原态之间的氧化还原平衡状态。在40 mV样品中,该簇处于双电子还原态。鉴定出了与处于三种氧化态的簇2的四个铁位点相关的不同光谱成分。从铁位点获得的光谱参数反映了不同的配体环境,从而有可能将光谱成分分配到各个铁位点。在完全氧化态下,所有四个铁离子均为高自旋铁离子,并通过反铁磁耦合形成抗磁性的S = 0态。在单电子和双电子还原态下,发现还原电子依次定位在两个富含氧/氮配体的铁位点上。基于X射线结构和穆斯堡尔参数,可以尝试鉴定还原的铁位点。对于双电子还原簇,电子顺磁共振和穆斯堡尔数据表明该簇是具有非零整数自旋的顺磁性物质。对于单电子还原簇,数据表明其半整数自旋为9/2。获得了所有四个铁位点的特征精细和超精细参数。讨论了结构影响和自旋耦合相互作用的性质。

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