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捕光叶绿素a/b蛋白中的激发能转移

Excitation energy transfer in the light-harvesting chlorophyll a/b.protein.

作者信息

Van Metter R L

出版信息

Biochim Biophys Acta. 1977 Dec 23;462(3):642-58. doi: 10.1016/0005-2728(77)90107-4.

Abstract

The "light-harvesting chlorophyll a/b.protein" described by Thornber has been prepared electrophoretically from spinach chloroplasts. The optical properties relevant to energy transfer have been measured in the red region (i.e. 600-700 nm). Measurements of the absorption spectrum, fluorescence excitation spectrum and excitation dependence of the fluorescence emission spectrum of this protein confirm that energy transfer from chlorophyll b to chlorophyll a is highly efficient, as is the case in concentrated chlorophyll solutions and in vivo. The excitiation dependence of the fluorescence polarization shows a minimum polarization of 1.9% at 650 nm which is the absorption maximum of chlorophyll b in the protein and rises steadily to a maximum value of 13.8% at 695 nm, the red edge of the chlorophyll a absorption band. Analysis of these measurements shows that at least two unresolved components must be responsible for the chlorophyll a absorption maximum. Comparison of polarization measurements with those observed in vivo shows that most of the depolarization observed in vivo can take place within a single protein. Circular dichroism measurements show a double structure in the chlorophyll b absorption band which suggest an exciton splitting not resolved in absorption. Analysis of these data yields information about the relative orientation of the So leads to S1 transition moments of the chlorophyll molecules within the protein.

摘要

索恩伯描述的“捕光叶绿素a/b蛋白”已通过电泳法从菠菜叶绿体中制备出来。已在红光区域(即600 - 700纳米)测量了与能量转移相关的光学性质。对该蛋白的吸收光谱、荧光激发光谱以及荧光发射光谱的激发依赖性进行的测量证实,从叶绿素b到叶绿素a的能量转移效率很高,这与浓叶绿素溶液和体内的情况相同。荧光偏振的激发依赖性表明,在650纳米处最小偏振度为1.9%,此波长是该蛋白中叶绿素b的吸收最大值,并且在695纳米(叶绿素a吸收带的红边)处稳步上升至最大值13.8%。对这些测量结果的分析表明,至少有两个未解析的成分必定对叶绿素a的吸收最大值起作用。将偏振测量结果与体内观察到的结果进行比较表明,体内观察到的大部分去偏振可能发生在单个蛋白内。圆二色性测量显示叶绿素b吸收带存在双重结构,这表明在吸收中未解析的激子分裂。对这些数据的分析得出了有关该蛋白内叶绿素分子的S₀到S₁跃迁矩相对取向的信息。

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