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光系统II捕光复合体II单体中激发能的流动:对主要植物天线结构模型的启示

The flow of excitation energy in LHCII monomers: implications for the structural model of the major plant antenna.

作者信息

Gradinaru C C, Ozdemir S, Gülen D, van Stokkum I H, van Grondelle R, van Amerongen H

机构信息

Department of Physics and Astronomy and Institute for Condensed Matter and Optical Physics, Free University of Amsterdam, De Boelelaan 1081, 1081 HV Amsterdam, The Netherlands.

出版信息

Biophys J. 1998 Dec;75(6):3064-77. doi: 10.1016/S0006-3495(98)77747-1.

Abstract

Spectral and kinetic information on energy transfer within the light-harvesting complex II (LHCII) monomer was obtained from this subpicosecond transient absorption study, by using selective excitation (663, 669, 672, 678, and 682 nm) of various Chl a absorption bands and detecting the induced changes over the entire Qy region (650-700 nm). It is shown that transfer from the pigment(s) absorbing around 663 nm to the low energy ones occurs in 5 +/- 1 ps, whereas the 670-nm excitation is delivered to the same "destination" in two phases (0.30 +/- 0.05 ps, and 12 +/- 2 ps), and a fast equilibration (lifetime 0.45 +/- 0.05 ps) takes place within the main absorption band (675-680 nm). From comparison with results from similar time-resolved measurements on trimeric samples, it can be concluded that the intramonomeric energy transfer completely determines the spectral equilibration observed in native LHCII complexes. To correlate the measured lifetimes and their associated spectra with the pigment organization within the available structural model of LHCII (. Nature. 367:614-621), extensive but straightforward theoretical modeling was used. Thus it is demonstrated that the pigment assignment (Chl a or Chl b) given by Kuhlbrandt and co-workers cannot simultaneously describe the dichroic spectra and the transient absorption results for the rather homologous LHCII and CP29 proteins. A more recent assignment for CP29, in which a Chl b molecule ("Chl b5") is identified as a Chl a (Dr. R. Bassi, personal communication), leads to a much better description of both CP29 and LHCII. Furthermore, the orientations of the transition dipole moments, which have not been obtained in the crystal structure, are now assigned for most of the Chl's.

摘要

通过对各种叶绿素a吸收带进行选择性激发(663、669、672、678和682 nm)并检测整个Qy区域(650 - 700 nm)的诱导变化,从这个亚皮秒瞬态吸收研究中获得了关于捕光复合物II(LHCII)单体内部能量转移的光谱和动力学信息。结果表明,从吸收波长在663 nm左右的色素向低能量色素的转移发生在5±1皮秒内,而670 nm激发则分两个阶段传递到相同的“目的地”(0.30±0.05皮秒和12±2皮秒),并且在主要吸收带(675 - 680 nm)内发生快速平衡(寿命为0.45±0.05皮秒)。通过与三聚体样品类似时间分辨测量结果的比较,可以得出结论,单体内部的能量转移完全决定了天然LHCII复合物中观察到的光谱平衡。为了将测量的寿命及其相关光谱与LHCII现有结构模型(《自然》。367:614 - 621)中的色素组织相关联,使用了广泛但直接的理论建模。因此证明,库尔布兰特及其同事给出的色素归属(叶绿素a或叶绿素b)不能同时描述相当同源的LHCII和CP29蛋白的二向色光谱和瞬态吸收结果。对CP29的最新归属,其中一个叶绿素b分子(“叶绿素b5)被鉴定为叶绿素a(R. 巴西博士,个人交流),对CP29和LHCII都有更好的描述。此外,现在为大多数叶绿素确定了在晶体结构中未获得的跃迁偶极矩的方向。

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