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首页> 外文期刊>Biophysics >Triplet State of the Primary Donor in Reaction Centers of the Phototrophic Bacterium Rhodobacter sphaeroides R26 with Active Photoinduced Electron Transfer
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Triplet State of the Primary Donor in Reaction Centers of the Phototrophic Bacterium Rhodobacter sphaeroides R26 with Active Photoinduced Electron Transfer

机译:活性光诱导电子转移的光养细菌球形红球菌R26反应中心的主要供体的三重态

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摘要

EPR characteristics of transient paramagnetic states photoinduced in isolated reaction centers of Rhodobacter sphaeroides R26 with intact electron transfer have been studied. It was demonstrated that the detected weak triplet state EPR signal belongs to the primary donor molecule and is populated via the con-ventional mechanism of radical pair S–T0 mixing. The distortion of the spectral shape of this signal is explained by the triplet quantum yield anisotropy brought about by the short lifetime of precursor radical pairs. The angular dependence of the anisotropy was evaluated. It was shown that the spectral shape of the triplet state of photosystem II reaction center observed in the case of singly-reduced primary quinone accep-tor can also be described by the anisotropic quantum yield of the triplet, with practically the same angular dependence. These properties confirm the conclusions on the mechanism of photoinduced electron transfer in photosystem II, made in previous publications. The peculiarities in the functioning of photosystem II reac-tion centers are probably determined by strict limitations on the triplet state generation.
机译:研究了在完整的电子转移条件下球形红球菌R26的孤立反应中心中光诱导的瞬态顺磁态的EPR特性。结果表明,检测到的弱三重态EPR信号属于主要的供体分子,并且通过自由基对S–T0混合的常规机制而被填充。该信号的频谱形状的失真是由前驱体自由基对的短寿命所带来的三重态量子产率各向异性所解释的。评价了各向异性的角度依赖性。结果表明,在单还原伯醌受体的情况下,所观察到的光系统II反应中心的三重态的光谱形状也可以用三重态的各向异性量子产率来描述,实际上具有相同的角度依赖性。这些性质证实了先前出版物中关于光系统II中光诱导电子转移机理的结论。光系统II反应中心功能的特殊性可能是由对三重态产生的严格限制所决定的。

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