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球形红细菌R-26.1反应中心中,初级供体与类胡萝卜素之间的三线态能量转移,该反应中心用修饰的细菌叶绿素色素进行了交换并用球形烯进行了重构。

Triplet state energy transfer between the primary donor and the carotenoid in Rhodobacter sphaeroides R-26.1 reaction centers exchanged with modified bacteriochlorophyll pigments and reconstituted with spheroidene.

作者信息

Frank H A, Chynwat V, Posteraro A, Hartwich G, Simonin I, Scheer H

机构信息

Department of Chemistry, University of Connecticut, Storrs 06269-4060, USA.

出版信息

Photochem Photobiol. 1996 Nov;64(5):823-31. doi: 10.1111/j.1751-1097.1996.tb01842.x.

Abstract

The dynamics of triplet energy transfer between the primary donor and the carotenoid were measured on several photosynthetic bacterial reaction center preparations from Rhodobacter sphaeroides: (a) wild-type strain 2.4.1, (b) strain R-26.1, (c) strain R-26.1 exchanged with 13(2)-hydroxy-[Zn]-bacteriochlorophyll at the accessory bacteriochlorophyll (BChl) sites and reconstituted with spheroidene and (d) strain R-26.1 exchanged with [3-vinyl]-13(2)-hydroxy-bacteriochlorophyll at the accessory BChl sites and reconstituted with spheroidene. The rise and decay times of the primary donor and carotenoid triplet-triplet absorption signals were monitored in the visible wavelength region between 538 and 555 nm as a function of temperature from 4 to 300 K. For the samples containing carotenoids, all of the decay times correspond well to the previously observed times for spheroidene (5 +/- 2 microseconds). The rise times of the carotenoid triplets were found in all cases to be biexponential and comprised of a strongly temperature-dependent component and a temperature-independent component. From a comparison of the behavior of the carotenoid-containing samples with that from the reaction center of the carotenoidless mutant Rb. sphaeroides R-26.1, the temperature-independent component has been assigned to the buildup of the primary donor triplet state resulting from charge recombination in the reaction center. Arrhenius plots of the buildup of the carotenoid triplet states were used to determine the activation energies for triplet energy transfer from the primary donor to the carotenoid. A model for the process of triplet energy transfer that is consistent with the data suggests that the activation barrier is strongly dependent on the triplet state energy of the accessory BChl pigment, BChlB.

摘要

在来自球形红杆菌的几种光合细菌反应中心制剂上,测量了初级供体与类胡萝卜素之间三重态能量转移的动力学:(a) 野生型菌株2.4.1,(b) R-26.1菌株,(c) 在辅助细菌叶绿素(BChl)位点与13(2)-羟基-[Zn]-细菌叶绿素交换并与球型烯重构的R-26.1菌株,以及(d) 在辅助BChl位点与[3-乙烯基]-13(2)-羟基-细菌叶绿素交换并与球型烯重构的R-26.1菌株。在538至555 nm的可见波长区域,监测初级供体和类胡萝卜素三重态-三重态吸收信号的上升和衰减时间,作为温度从4 K到300 K的函数。对于含有类胡萝卜素的样品,所有的衰减时间都与先前观察到的球型烯的时间(5±2微秒)非常吻合。在所有情况下,类胡萝卜素三重态的上升时间都是双指数的,由一个强烈依赖温度的成分和一个与温度无关的成分组成。通过比较含类胡萝卜素样品与无类胡萝卜素突变体球形红杆菌R-26.1反应中心的行为,与温度无关的成分被归因于反应中心电荷复合产生的初级供体三重态的积累。类胡萝卜素三重态积累的阿伦尼乌斯图用于确定从初级供体到类胡萝卜素的三重态能量转移的活化能。与数据一致的三重态能量转移过程模型表明活化势垒强烈依赖于辅助BChl色素BChlB的三重态能量。

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