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Species Dependence of the Redox Potential of the Primary Electron Donor P700 in Photosystem I of Oxygenic Photosynthetic Organisms Revealed by Spectroelectrochemistry

机译:光谱电化学揭示的氧合光合生物光系统I中主要电子给体P700氧化还原电位的物种依赖性

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摘要

The redox potential of the primary electron donor P700, E-m(P700/P700(+)), of Photosystem I (PSI) has been determined for 10 oxygenic photosynthesis organisms, ranging from cyanobacteria, red algae, green algae to higher plants, by spectroelectrochemistry with an optically transparent thin-layer electrode (OTTLE) cell to elucidate the scattering by as much as 150 mV in reported values of E-m(P700/P700(+)). The E-m(P700/P700(+)) values determined within error ranges of +/- 1-4 mV exhibited a significant species dependence, with a span > 70 mV, from +398 to +470 mV vs. the standard hydrogen electrode (SHE). The E-m(P700/P700(+)) value appears to change systematically in going from cyanobacteria and primitive eukaryotic red algae, then to green algae and higher plants. From an evolutionary point of view, this result suggests that the species believed to appear later in evolution of photosynthetic organisms exhibit higher values of E-m(P700/P700(+)). Further, the species dependence of E-m(P700/P700(+)) seems to originate in the species-dependent redox potentials of soluble metalloproteins, Cyt c(6) and plastocyanin, which re-reduce the oxidized P700 in the electron transfer chain.
机译:已通过光谱电化学法确定了光系统I(PSI)的主要电子供体P700的Em(P700 / P700(+))的氧化还原电势,涉及从蓝细菌,红藻,绿藻到高等植物的10种含氧光合作用生物用光学透明的薄层电极(OTTLE)电池来阐明在Em(P700 / P700(+))的报告值中的散射高达150 mV。与标准氢电极相比,在+/- 1-4 mV误差范围内确定的Em(P700 / P700(+))值显示出显着的物种依赖性,跨度> 70 mV,从+398到+470 mV。她)。 E-m(P700 / P700(+))值似乎从蓝细菌和原始的真核红藻,再到绿藻和高等植物,发生了系统性变化。从进化的角度来看,该结果表明,认为在光合生物进化中出现较晚的物种显示出更高的E-m(P700 / P700(+))值。此外,E-m(P700 / P700(+))的物种依赖性似乎起源于可溶性金属蛋白Cyt c(6)和质体蓝蛋白的物种依赖性氧化还原电位,它们重新还原了电子转移链中氧化的P700。

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