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固氮酶P簇中氧化还原依赖性结构变化。

Redox-dependent structural changes in the nitrogenase P-cluster.

作者信息

Peters J W, Stowell M H, Soltis S M, Finnegan M G, Johnson M K, Rees D C

机构信息

Division of Chemistry and Chemical Engineering, California Institute of Technology, Pasadena 91125, USA.

出版信息

Biochemistry. 1997 Feb 11;36(6):1181-7. doi: 10.1021/bi9626665.

Abstract

The structure of the nitrogenase MoFe-protein from Azotobacter vinelandii has been refined to 2.0 A resolution in two oxidation states. EPR studies on the crystals indicate that the structures correspond to the spectroscopically assigned oxidized (P(OX)/M(OX)) and the native or dithionite-reduced (P(N)/M(N)) forms of the enzyme. Both MoFe-protein structures are essentially identical, with the exception of the P-cluster. The MoFe-protein P-cluster in each state is found to contain eight Fe and seven S atoms. Interconversion between the two redox states involves movement of two Fe atoms and an exchange of protein coordination for ligands supplied by a central S atom. In the oxidized P(OX) state, the cluster is coordinated by the protein through six cysteine ligands, Ser-beta188 O gamma, and the backbone amide of Cys-alpha88. In the native P(N) state, Ser-beta188 O gamma and the amide N of Cys-alpha88 no longer coordinate the cluster due to movement of their coordinated Fe atoms toward the central sulfur. Consequently, this central sulfur adopts a distorted octahedral environment with six surrounding Fe atoms. A previously described model of the P-cluster containing 8Fe-8S likely reflects the inappropriate modeling of a single structure to a mixture of these two P-cluster redox states. These observed redox-mediated structural changes of the P-cluster suggest a role for this cluster in coupling electron transfer and proton transfer in nitrogenase.

摘要

棕色固氮菌的固氮酶钼铁蛋白结构已在两种氧化态下精修至2.0埃分辨率。对晶体的电子顺磁共振研究表明,这些结构分别对应于光谱学上指定的氧化态(P(OX)/M(OX))和天然态或连二亚硫酸盐还原态(P(N)/M(N))的酶形式。除了P簇之外,两种钼铁蛋白结构基本相同。发现每种状态下的钼铁蛋白P簇含有八个铁原子和七个硫原子。两种氧化还原状态之间的相互转换涉及两个铁原子的移动以及由中心硫原子提供的配体与蛋白质配位的交换。在氧化的P(OX)状态下,该簇通过六个半胱氨酸配体、Ser-β188的Oγ以及Cys-α88的主链酰胺与蛋白质配位。在天然的P(N)状态下,由于其配位的铁原子向中心硫移动,Ser-β188的Oγ和Cys-α88的酰胺氮不再与该簇配位。因此,这个中心硫采用了一个扭曲的八面体环境,周围有六个铁原子。先前描述的包含8Fe-8S的P簇模型可能反映了将单一结构不适当地建模为这两种P簇氧化还原状态的混合物。这些观察到的P簇的氧化还原介导的结构变化表明该簇在固氮酶中耦合电子转移和质子转移方面发挥作用。

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