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在酸性条件下叶绿素 a 类似物的结构依赖性脱金属动力学。

Structure-dependent demetalation kinetics of chlorophyll a analogs under acidic conditions.

机构信息

Department of Chemistry, Faculty of Science and Engineering, Kinki University, Higashi-Osaka, Osaka, Japan.

出版信息

Photochem Photobiol. 2013 Jan-Feb;89(1):68-73. doi: 10.1111/j.1751-1097.2012.01213.x. Epub 2012 Aug 30.

Abstract

Demetalation of chlorophyll (Chl) a and its analogs is an important reaction in oxygenic photosynthetic organisms, which produces the primary electron acceptors in photosystem II reaction centers and is crucial in the Chl degradation. From these viewpoints, demetalation reactions of four Chl a analogs, 3,8-divinyl-Chl a (DV-Chl a), 3-devinyl-3-ethyl-Chl a (mesoChl a), 13(2)-demethoxycarbonyl-Chl a (pyroChl a) and protochlorophyll a (PChl a), were kinetically analyzed under weakly acidic conditions, and were compared with that of Chl a. DV-Chl a exhibited slower demetalation kinetics than did Chl a, whereas demetalation of mesoChl a was faster than that of Chl a. The difference in demetalation kinetics of the three chlorophyllous pigments originates from the electron-withdrawing ability of the vinyl group as the peripheral substituent compared with the ethyl group. Removal of the electron-withdrawing and homoconjugating 13(2) -methoxycarbonyl group in Chl a (Chl a → pyroChl a) accelerated demetalation kinetics by two-fold. PChl a possessing the porphyrin-type skeleton exhibited slower demetalation kinetics than Chl a. The structure-dependent demetalation properties of Chl a analogs will be useful for understanding in vivo Chl demetalation reactions in oxygenic photosynthetic organisms.

摘要

叶绿素(Chl)a 和其类似物的脱金属化是产氧光合作用生物中的一个重要反应,它产生光系统 II 反应中心中的初级电子受体,并且在 Chl 降解中至关重要。从这些观点出发,在弱酸性条件下对四种 Chl a 类似物,即 3,8-二乙烯基-Chl a(DV-Chl a)、3-去乙烯基-3-乙基-Chl a(mesoChl a)、13(2)-去甲氧基羰基-Chl a(pyroChl a)和原叶绿素 a(PChl a)的脱金属化反应进行了动力学分析,并与 Chl a 的脱金属化反应进行了比较。DV-Chl a 的脱金属化动力学比 Chl a 慢,而 mesoChl a 的脱金属化比 Chl a 快。这三种叶绿素类色素脱金属化动力学的差异源于作为外围取代基的乙烯基的吸电子能力与乙基相比。Chl a(Chl a→pyroChl a)中去除吸电子和同共轭的 13(2)-甲氧基羰基基团,使脱金属化动力学加快了两倍。具有卟啉型骨架的 PChl a 表现出比 Chl a 更慢的脱金属化动力学。Chl a 类似物的结构依赖性脱金属化性质将有助于理解产氧光合作用生物体内的 Chl 脱金属化反应。

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