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多甲藻素-叶绿素a蛋白的光谱学:洞察海洋藻类的光捕获策略。

Spectroscopy of the peridinin-chlorophyll-a protein: insight into light-harvesting strategy of marine algae.

作者信息

Polívka Tomás, Hiller Roger G, Frank Harry A

机构信息

Institute of Physical Biology, University of South Bohemia, Zamek 136, CZ-373 33 Nove Hrady, Czech Republic.

出版信息

Arch Biochem Biophys. 2007 Feb 15;458(2):111-20. doi: 10.1016/j.abb.2006.10.006. Epub 2006 Oct 27.

Abstract

An important component of the photosynthetic apparatus is a light-harvesting system that captures light energy and transfers it efficiently to the reaction center. Depending on environmental conditions, photosynthetic antennae have adopted various strategies for this function. Peridinin-chlorophyll-a protein (PCP) represents a unique situation because, unlike other antenna systems which have a preponderance of chlorophyll, it has the carotenoid, peridinin, as its major pigment. The key structural feature of peridinin is a conjugated carbonyl group. Owing to the presence of this group, an intramolecular charge-transfer excited state is formed in peridinin which exhibits different excited state spectra and dynamics depending on the polarity of the environment. The charge-transfer state also facilitates energy transfer between peridinin and chlorophyll-a in PCP. This review summarizes results of spectroscopic investigations of PCP in the past few years, emphasizing the specific light-harvesting strategy developed by marine photosynthetic organisms utilizing carbonyl-containing carotenoids in their antenna complexes.

摘要

光合装置的一个重要组成部分是光捕获系统,该系统捕获光能并将其有效地传递到反应中心。根据环境条件,光合天线针对此功能采用了各种策略。叶绿素-蛋白(PCP)代表了一种独特的情况,因为与其他以叶绿素为主的天线系统不同,它以类胡萝卜素叶绿素作为主要色素。叶绿素的关键结构特征是一个共轭羰基。由于该基团的存在,叶绿素中形成了分子内电荷转移激发态,该激发态根据环境的极性表现出不同的激发态光谱和动力学。电荷转移态还促进了PCP中叶绿素和叶绿素a之间的能量转移。本文综述了过去几年中对PCP的光谱研究结果,强调了海洋光合生物在其天线复合物中利用含羰基类胡萝卜素所开发的特定光捕获策略。

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