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叶绿素α中的浓度猝灭及其与体内功能电荷转移的关系。

Concentration quenching in chlorophyll-alpha and relation to functional charge transfer in vivo.

作者信息

Gutschick V P

出版信息

J Bioenerg Biomembr. 1978 Dec;10(5-6):153-7. doi: 10.1007/BF00743105.

Abstract

Chlorophyll-alpha in ordinary solvents exhibits concentration quenching. Dimeric chlorophyll is reasonably well confirmed as the quenching species, by a critical reanalysis of available data on concentration dependence and on spectral features, in ordinary solvents, and in several analogous quenching environments. This quenching in the dimer in vitro is somewhat less firmly analyzed as due to a new fast internal conversion. Much peripheral evidence supports transient charge transfer as the cause of internal conversion. The same evidence points to a strong similarity to functional charge transfer in vivo. I suggest that inability to extract P680 may be due to its conversion to a form resembling P700 by addition of water. A number of straightforward experiments are suggested to test these proposals. In particular, it is desirable to test for the existence of a vibronic perturbation (from a higher npi* state) in the dimer, as an alternative to charge transfer for explaining the "observed" internal conversion. Such a vibronic cause would raise interesting problems for phototrap function in vivo.

摘要

普通溶剂中的叶绿素α会出现浓度猝灭现象。通过对普通溶剂以及几种类似猝灭环境中有关浓度依赖性和光谱特征的现有数据进行严格重新分析,二聚体叶绿素被合理地确认为猝灭物质。体外二聚体中的这种猝灭,因一种新的快速内部转换而得到的分析稍欠确凿。许多间接证据支持瞬态电荷转移是内部转换的原因。同样的证据表明其与体内功能性电荷转移有很强的相似性。我认为无法提取P680可能是由于其通过加水转化为类似P700的形式。建议进行一些直接的实验来检验这些提议。特别是,希望测试二聚体中是否存在振动扰动(来自更高的nπ*态),作为解释“观察到的”内部转换的电荷转移的替代方案。这样一种振动原因会给体内光捕获功能带来有趣的问题。

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