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I 型同源二聚体反应中心的结合态铁硫簇。

The bound iron-sulfur clusters of type-I homodimeric reaction centers.

机构信息

Department of Biochemistry and Molecular Biology, The Pennsylvania State University, University Park, PA 16802, USA.

出版信息

Photosynth Res. 2010 Jun;104(2-3):333-46. doi: 10.1007/s11120-010-9543-y. Epub 2010 Apr 20.

Abstract

The hallmark of a Type-I photosynthetic reaction center (RC) is the presence of three 4Fe-4S clusters, named F(X), F(A), and F(B) that act as terminal electron acceptors. Their function is to increase the distance, and hence the lifetime, of the initial charge-separated state so that diffusion-mediated processes, such as the reduction of ferredoxin, can occur. Type-I homodimeric RCs, such as those found in heliobacteria, green-sulfur bacteria, and Candidatus Chloracidobacterium thermophilum, are less well understood than Photosystem I, the prototypical Type-I heterodimeric RC found in cyanobacteria and plants. Here, we review recent progress that has been made in elucidating the spectroscopic and biochemical properties of the bound Fe/S clusters and their cognate proteins in homodimeric Type-I RCs. In Heliobacterium modesticaldum, the identification and characterization of two loosely bound polypeptides, PshBI and PshBII that harbor the F(A) and F(B) clusters threatens to break the long-accepted assumption that Type-I RCs harbor one tightly bound F(A)/F(B)-containing protein. Additionally, the detection of the F(X) cluster in S = 1/2 and S = 3/2 ground spin states has resolved the long-standing issue of its missing EPR spectrum. In Chlorobaculum tepidum, the focus is on the biochemical properties of the unusual extrinsic Fe/S protein, PscB, which is readily dissociable from the RC core. The C-terminal domain of PscB is constructed as a bacterial ferredoxin, harboring the F(A) and F(B) clusters, but the N-terminal domain contains a number of PxxP motifs and is rich in Lys, Pro, and Ala residues, features characteristic of proteins that interact with SH3 domains. Little is known about Candidatus Chloracidobacterium thermophilum except that the photosynthetic RC is predicted to be a Type-I homodimer with an F(X)-binding site. These findings are placed in a context that promises to unify the acceptor side of homodimeric Type-I RCs in prokaryotic phototrophs.

摘要

I 型光合反应中心的标志是存在三个 4Fe-4S 簇,分别命名为 F(X)、F(A) 和 F(B),它们作为末端电子受体。它们的功能是增加初始电荷分离态的距离,从而延长其寿命,以便发生扩散介导的过程,例如铁氧还蛋白的还原。I 型同二聚体 RC,如在嗜热盐杆菌、绿硫细菌和 Candidatus Chloracidobacterium thermophilum 中发现的 RC,不如蓝细菌和植物中发现的典型 I 型异二聚体 RC Photosystem I 那样被深入了解。在这里,我们回顾了最近在阐明同二聚体 I 型 RC 中结合的 Fe/S 簇及其同源蛋白的光谱和生化特性方面取得的进展。在 Heliobacterium modesticaldum 中,两个松散结合的多肽 PshBI 和 PshBII 的鉴定和表征,它们分别含有 F(A)和 F(B)簇,这有可能打破长期以来的假设,即 I 型 RC 含有一个紧密结合的含有 F(A)/F(B)的蛋白质。此外,在 S = 1/2 和 S = 3/2 基态自旋状态下检测到 F(X)簇,解决了其缺失 EPR 谱的长期问题。在 Chlorobaculum tepidum 中,重点是研究不寻常的外在 Fe/S 蛋白 PscB 的生化特性,它很容易从 RC 核心中解离出来。PscB 的 C 端结构域构建为一个细菌铁氧还蛋白,含有 F(A)和 F(B)簇,但 N 端结构域含有多个 PxxP 模体,富含 Lys、Pro 和 Ala 残基,这些特征是与 SH3 结构域相互作用的蛋白质的特征。除了预测光合作用 RC 是一个具有 F(X)结合位点的 I 型同二聚体外,对 Candidatus Chloracidobacterium thermophilum 知之甚少。这些发现被置于一个有望统一原核光合生物中同二聚体 I 型 RC 受体侧的背景下。

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