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Geometry for the Primary Electron Donor and the Bacteriopheophytin Acceptor in Rhodopseudomonas viridis Photosynthetic Reaction Centers

机译:绿假单胞菌光合反应中心中主要电子供体和细菌卟啉受体的几何结构

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摘要

The tetrapyrrole electron donors and acceptors (bacteriochlorophyll, BCh; bacteriopheophytin, BPh) within the bacterial photosynthetic reaction center (RC) are arranged with a specific geometry that permits rapid (picosecond time scale) electron tunneling to occur between them. Here we have measured the angle between the molecular planes of the bacteriochlorophyll dimer (primary donor), B2, and the acceptor bacteriopheophytin, H, by analyzing the dichroism of the absorption change associated with H reduction, formed by photoselection with RCs of Rhodopseudomonas viridis. This angle between molecular planes is found to be 60° ± 2. This means that the ultrafast electron tunneling must occur between donors and acceptors that are fixed by the protein to have a noncoplanar alignment. Nearly perpendicular alignments have been determined for other electron tunneling complexes involving RCs. These geometries can be contrasted with models proposed for heme-heme electron transfer complexes, which have emphasized that mutually parallel orientations should permit the most kinetically facile transfers.
机译:细菌光合反应中心(RC)中的四吡咯电子供体和受体(细菌叶绿素,BCh;噬菌体,BPh)具有特定的几何形状,可以在它们之间发生快速(皮秒级的时间)电子隧穿。在这里,我们通过分析绿假单胞菌的RCs进行光选择而形成的与H减少相关的吸收变化的二色性,从而测量了细菌叶绿素二聚体(主要供体)B2和受体噬菌素H的分子平面之间的夹角。发现分子平面之间的角度为60°±2。这意味着超快电子隧穿必须发生在供体和受体之间,供体和受体被蛋白质固定以具有非共面排列。对于涉及RC的其他电子隧穿络合物,已经确定了几乎垂直的排列。这些几何形状可以与针对血红素-血红素电子转移络合物提出的模型进行对比,该模型强调了相互平行的取向应允许最动力学上容易的转移。

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