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来自荚膜红细菌的一种[2Fe-2S]铁氧化还原蛋白的结构,可能参与铁硫簇生物合成以及还原时观察到的构象变化。

Structure of a [2Fe-2S] ferredoxin from Rhodobacter capsulatus likely involved in Fe-S cluster biogenesis and conformational changes observed upon reduction.

作者信息

Sainz Germaine, Jakoncic Jean, Sieker Larry C, Stojanoff Vivian, Sanishvili Nukri, Asso Marcel, Bertrand Patrick, Armengaud Jean, Jouanneau Yves

机构信息

European Synchrotron Radiation Facility, BP 220, 38054 Grenoble Cedex 9, France.

出版信息

J Biol Inorg Chem. 2006 Mar;11(2):235-46. doi: 10.1007/s00775-005-0069-2. Epub 2006 Jan 10.

Abstract

FdVI from Rhodobacter capsulatus is structurally related to a group of [2Fe-2S] ferredoxins involved in iron-sulfur cluster biosynthesis. Comparative genomics suggested that FdVI and orthologs found in alpha-Proteobacteria are involved in this process. Here, the crystal structure of FdVI has been determined for both the oxidized and the reduced protein. The [2Fe-2S] cluster lies 6 A below the protein surface in a hydrophobic pocket without access to the solvent. This particular cluster environment might explain why the FdVI midpoint redox potential (-306 mV at pH 8.0) did not show temperature or ionic strength dependence. Besides the four cysteines that bind the cluster, FdVI features an extra cysteine which is located close to the S1 atom of the cluster and is oriented in a position such that its thiol group points towards the solvent. Upon reduction, the general fold of the polypeptide chain was almost unchanged. The [2Fe-2S] cluster underwent a conformational change from a planar to a distorted lozenge. In the vicinity of the cluster, the side chain of Met24 was rotated by 180 degrees , bringing its S atom within hydrogen-bonding distance of the S2 atom of the cluster. The reduced molecule also featured a higher content of bound water molecules, and more extensive hydrogen-bonding networks compared with the oxidized molecule. The unique conformational changes observed in FdVI upon reduction are discussed in the light of structural studies performed on related ferredoxins.

摘要

来自荚膜红细菌的FdVI在结构上与一组参与铁硫簇生物合成的[2Fe-2S]铁氧化还原蛋白相关。比较基因组学表明,FdVI以及在α-变形菌中发现的直系同源物都参与了这一过程。在此,已确定了氧化态和还原态FdVI的晶体结构。[2Fe-2S]簇位于蛋白质表面下方6埃处的一个疏水口袋中,与溶剂不接触。这种特殊的簇环境可能解释了为什么FdVI的中点氧化还原电位(pH 8.0时为-306 mV)不显示温度或离子强度依赖性。除了结合该簇的四个半胱氨酸外,FdVI还具有一个额外的半胱氨酸,它位于靠近簇的S1原子处,其取向使得其硫醇基团指向溶剂。还原后,多肽链的总体折叠几乎不变。[2Fe-2S]簇经历了从平面到扭曲菱形的构象变化。在簇的附近,Met24的侧链旋转了180度,使其S原子处于与簇的S2原子的氢键距离内。与氧化态分子相比,还原态分子还具有更高含量的结合水分子和更广泛的氢键网络。根据对相关铁氧化还原蛋白进行的结构研究,讨论了FdVI还原时观察到的独特构象变化。

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