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Initial electron donor and acceptor in isolated Photosystem II reaction centers identified with femtosecond mid-IR spectroscopy

机译:飞秒中红外光谱法鉴定的孤立的Photosystem II反应中心中的初始电子供体和受体

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Despite the apparent similarity between the plant Photosystem 11 reaction center (RC) and its purple bacterial counterpart, we show in this work that the mechanism of charge separation is very different for the two photosynthetic RCs. By using femtosecond visible-pump-mid-infrared probe spectroscopy in the region of the chlorophyll ester and keto modes, between 1,775 and 1,585 cm(-1), with 150-fs time resolution, we show that the reduction of pheophytin occurs on a 0.6- to 0.8-ps time scale, whereas P+, the precursor state for water oxidation, is formed after approximate to 6 ps. We conclude therefore that in the Photosystem 11 RC the primary charge separation occurs between the "accessory chlorophyll" ChI(D1) and the pheophytin on the so-called active branch.
机译:尽管植物光系统11反应中心(RC)和其紫色细菌对应物之间存在明显的相似性,但我们在这项工作中表明,两种光合RC的电荷分离机理非常不同。通过使用飞秒可见泵-中红外探针光谱法在叶绿素酯和酮模式的区域中,在1,775和1,585 cm(-1)之间,具有150 fs的时间分辨率,我们表明脱镁叶绿素的还原发生在时间范围为0.6-0.8ps,而水氧化的前体状态P +大约在6ps后形成。因此,我们得出结论,在光系统11 RC中,主电荷分离发生在“辅助叶绿素” ChI(D1)和所谓的活性分支上的脱镁叶绿素之间。

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