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首页> 外文期刊>Biochemistry >Assignment of spectral substructures to pigment-binding sites in higher plant light-harvesting complex LHC-II.
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Assignment of spectral substructures to pigment-binding sites in higher plant light-harvesting complex LHC-II.

机译:光谱亚结构分配给高级植物采光复合物LHC-II中的色素结合位点。

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摘要

The trimeric main light-harvesting complex (LHC-II) is the only antenna complex of higher plants of which a high-resolution 3D structure has been obtained (Kuhlbrandt, W., Wang, D., and Fujiyoshi, Y. (1994) Nature 367, 614-621) and which can be refolded in vitro from its components. Four different recombinant forms of LHC-II, each with a specific chlorophyll (Chl) binding site removed by site-directed mutagenesis, were refolded from heterologously overexpressed apoprotein, purified pigments, and lipid. Absorption spectra of mutant LHC-II were measured in the temperature range from 4 to 300 K and compared to likewise refolded wild-type complex and to native LHC-II isolated from pea chloroplasts. Chls at different binding sites have characteristic, well-defined absorption sub-bands. Mixed occupation of binding sites with Chls a and b is not observed. Temperature-dependent changes of the mutant absorption spectra reveal a consistent shift of the major difference bands but an irregular behavior of minor bands. A model of the spectral substructure of LHC-II is proposed which accounts for the different absorption properties of the 12 individual Chls in the complex, thus establishing a first consistent correlation between the 3D structure of LHC-II and its spectral properties. The spectral substructure is valid for recombinant and native LHC-II, indicating that both have the same spatial arrangement of Chls and that the refolded complex is fully functional.
机译:三聚体主要采光复合体(LHC-II)是已获得高分辨率3D结构的高等植物的唯一天线复合体(Kuhlbrandt,W.,Wang,D.,and Fujiyoshi,Y.(1994) Nature 367,614-621),并且可以从其组成部分在体外重新折叠。从异源过表达的载脂蛋白,纯化的色素和脂质中重新折叠了LHC-II的四种不同重组形式,每种形式都具有通过定点诱变去除的特定叶绿素(Chl)结合位点。在4至300 K的温度范围内测量了突变LHC-II的吸收光谱,并将其与同样重折叠的野生型复合物和从豌豆叶绿体中分离的天然LHC-II进行了比较。在不同结合位点的Chl具有特征明确的吸收子带。没有观察到结合位点与Chls a和b的混合占据。突变体吸收光谱的温度依赖性变化揭示了主要差异谱带的一致移动,但次要谱带的行为不规则。提出了LHC-II光谱子结构的模型,该模型考虑了复合物中12个单独Chl的不同吸收特性,从而在LHC-II的3D结构与其光谱特性之间建立了第一个一致的相关性。光谱亚结构对重组LHC-II和天然LHC-II有效,表明两者具有相同的Chls空间排列,并且重新折叠的复合物具有完全的功能。

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