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源自绿脓杆菌反应中心晶体结构的光诱导电子转移与质子摄取的耦合,该反应中心在次级醌QB的结合位点进行了修饰。

The coupling of light-induced electron transfer and proton uptake as derived from crystal structures of reaction centres from Rhodopseudomonas viridis modified at the binding site of the secondary quinone, QB.

作者信息

Lancaster C R, Michel H

机构信息

Max-Planck-Institut für Biophysik, Frankfurt am Main, Germany.

出版信息

Structure. 1997 Oct 15;5(10):1339-59. doi: 10.1016/s0969-2126(97)00285-2.

Abstract

BACKGROUND

In a reaction of central importance to the energetics of photosynthetic bacteria, light-induced electron transfer in the reaction centre (RC) is coupled to the uptake of protons from the cytoplasm at the binding site of the secondary quinone (QB). In the original structure of the RC from Rhodopseudomonas viridis (PDB entry code 1PRC), the QB site was poorly defined because in the standard RC crystals it was only approximately 30% occupied with ubiquinone-9 (UQ9). We report here the structural characterization of the QB site by crystallographic refinement of UQ9-depleted RCs and of complexes of the RC either with ubiquinone-2 (UQ2) or the electron-transfer inhibitor stigmatellin in the QB site.

RESULTS

The structure of the RC complex with UQ2, refined at 2.45 A resolution, constitutes the first crystallographically reliably defined binding site for quinones from the bioenergetically important quinone pool of biological, energy-transducing membranes. In the UQ9-depleted QB site of the RC structure, refined at 2.4 A resolution, apparently five (and possibly six) water molecules are bound instead of the ubiquinone head group, and a detergent molecule binds in the region of the isoprenoid tail. All of the protein-cofactor interactions implicated in the binding of the ubiquinone head group are also implicated in the binding of the stigmatellin head group. In the structure of the stigmatellin-RC complex, refined at 2.4 A resolution, additional hydrogen bonds stabilize the binding of stigmatellin over that of ubiquinone. The tentative position of UQ9 in the QB site in the original data set (1PRC) was re-examined using the structure of the UQ9-depleted RC as a reference. A modified QB site model, which exhibits greater similarity to the distal ubiquinone-10 (UQ10) positioning in the structure of the RC from Rhodobacter sphaeroides (PDB entry code 1PCR), is suggested as the dominant binding site for native UQ9.

CONCLUSIONS

The structures reported here can provide models of quinone reduction cycle intermediates. The binding pattern observed for the stigmatellin complex, where the ligand donates a hydrogen bond to Ser L223 (where 'L' represents the L subunit of the RC), can be viewed as a model for the stabilization of a monoprotonated reduced intermediate (QBH or QBH-). The presence of Ser L223 in the QB site indicates that the QB site is not optimized for QB binding, but for QB reduction to the quinol.

摘要

背景

在光合细菌能量代谢的一个至关重要的反应中,反应中心(RC)的光诱导电子转移与在次级醌(QB)结合位点从细胞质摄取质子相偶联。在绿脓杆菌反应中心的原始结构(蛋白质数据银行登录号1PRC)中,QB位点定义不明确,因为在标准的反应中心晶体中它仅约30%被泛醌-9(UQ9)占据。我们在此报告通过对耗尽UQ9的反应中心以及反应中心与QB位点中的泛醌-2(UQ2)或电子转移抑制剂柱晶白霉素的复合物进行晶体学精修来对QB位点进行结构表征。

结果

以2.45 Å分辨率精修的与UQ2形成的反应中心复合物的结构,构成了来自生物能量转换膜的生物能量学重要醌库中醌的首个晶体学上可靠定义的结合位点。在以2.4 Å分辨率精修的反应中心结构的耗尽UQ9的QB位点中,显然有五个(可能六个)水分子结合,而不是泛醌头部基团,并且一个去污剂分子结合在类异戊二烯尾部区域。所有与泛醌头部基团结合有关的蛋白质 - 辅因子相互作用也与柱晶白霉素头部基团的结合有关。在以2.4 Å分辨率精修的柱晶白霉素 - 反应中心复合物的结构中,额外的氢键稳定了柱晶白霉素的结合,使其比泛醌的结合更稳定。使用耗尽UQ9的反应中心的结构作为参考,重新检查了原始数据集中(1PRC)UQ9在QB位点的暂定位置。提出了一个修改后的QB位点模型,它与球形红杆菌反应中心结构(蛋白质数据银行登录号1PCR)中远端泛醌-10(UQ10)的定位表现出更大的相似性,作为天然UQ9的主要结合位点。

结论

此处报告的结构可以提供醌还原循环中间体的模型。在柱晶白霉素复合物中观察到的结合模式,其中配体向Ser L223(其中“L”代表反应中心的L亚基)提供氢键,可以被视为单质子化还原中间体(QBH或QBH - )稳定化的模型。QB位点中Ser L223的存在表明QB位点不是为QB结合而优化,而是为QB还原为氢醌而优化。

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