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首页> 外文期刊>Photosynthesis Research >The atypical iron-coordination geometry of cytochrome f remains unchanged upon binding to plastocyanin, as inferred by XAS
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The atypical iron-coordination geometry of cytochrome f remains unchanged upon binding to plastocyanin, as inferred by XAS

机译:XAS推断,细胞色素f的非典型铁配位几何形状在与质体蓝素结合后保持不变

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摘要

The transient complex between cytochrome f and plastocyanin from the cyanobacterium Nostoc sp. PCC 7119 has been analysed by X-ray Absorption Spectroscopy in solution, using both proteins in their oxidized and reduced states. Fe K-edge data mainly shows that the atypical metal coordination geometry of cytochrome f, in which the N-terminal amino acid acts as an axial ligand of the heme group, remains unaltered upon binding to its redox partner, plastocyanin. This fact suggests that cytochrome f provides a stable binding site for plastocyanin and minimizes the reorganization energy required in the transient complex formation, which could facilitate the electron transfer between the two redox partners.
机译:细胞色素f和蓝藻Nostoc sp。的质体蓝蛋白之间的瞬时复合物。 PCC 7119已通过X射线吸收光谱法在溶液中进行了分析,同时使用了处于氧化和还原状态的两种蛋白质。 Fe K-edge数据主要表明,细胞色素f的非典型金属配位几何形状(其中N末端氨基酸充当血红素基团的轴向配体)在结合其氧化还原伴侣plastocyanin时保持不变。这一事实表明,细胞色素f为质体蓝蛋白提供了稳定的结合位点,并最大限度地减少了瞬态复合物形成过程中所需的重组能量,这可以促进两个氧化还原伙伴之间的电子转移。

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