首页> 外文OA文献 >Analysis of the pigment stoichiometry of pigment-protein complexes from barley (Hordeum vulgare). The xanthophyll cycle intermediates occur mainly in the light-harvesting complexes of photosystem I and photosystem II.
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Analysis of the pigment stoichiometry of pigment-protein complexes from barley (Hordeum vulgare). The xanthophyll cycle intermediates occur mainly in the light-harvesting complexes of photosystem I and photosystem II.

机译:大麦(大麦)色素-蛋白质复合物的色素化学计量分析。叶黄素循环中间体主要存在于光系统I和光系统II的光收集复合物中。

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摘要

The carotenoid zeaxanthin has been implicated in a nonradiative dissipation of excess excitation energy. To determine its site of action, we have examined the location of zeaxanthin within the thylakoid membrane components. Five pigment-protein complexes were isolated with little loss of pigments: photosystem I (PSI); core complex (CC) I, the core of PSI; CC II, the core of photosystem II (PSII); light-harvesting complex (LHC) IIb, a trimer of the major light-harvesting protein of PSII; and LHC IIa, c, and d, a complex of the monomeric minor light-harvesting proteins of PSII. Zeaxanthin was found predominantly in the LHC complexes. Lesser amounts were present in the CCs possibly because these contained some extraneous LHC polypeptides. The LHC IIb trimer and the monomeric LHC II a, c, and d pigment-proteins from dark-adapted plants each contained, in addition to lutein and neoxanthin, one violaxanthin molecule but little antheraxanthin and no zeaxanthin. Following illumination, each complex had a reduced violaxanthin content, but now more antheraxanthin and zeaxanthin were present. PSI had little or no neoxanthin. The pigment content of LHC I was deduced by subtracting the pigment content of CC I from that of PSI. Our best estimate for the carotenoid content of a LHC IIb trimer from dark-adapted plants is one violaxanthin, two neoxanthins, six luteins, and 0.03 mol of antheraxanthin per mol trimer. The xanthophyll cycle occurs mainly or exclusively within the light-harvesting antennae of both photosystems.
机译:类胡萝卜素玉米黄质与多余的激发能量的非辐射消散有关。为了确定其作用部位,我们检查了玉米黄质在类囊体膜成分中的位置。分离出五种色素-蛋白质复合物,色素损失很少:光系统I(PSI);核心综合体(CC)I,PSI的核心; CC II,光系统II(PSII)的核心;聚光复合物(LHC)IIb,是PSII主要聚光蛋白的三聚体; LHC IIa,c和d是PSII的单体次要轻质捕集蛋白的复合物。玉米黄质主要存在于LHC复合物中。 CC中含量较低,可能是因为这些CC中含有一些无关的LHC多肽。除了叶黄素和新黄嘌呤外,来自黑暗适应植物的LHC IIb三聚体和单体LHC IIa,c和d色素蛋白还分别含有一个紫黄质分子,但几乎不含花青素,而不含玉米黄质。光照后,每种复合物的紫黄质含量降低,但现在存在更多的花药黄质和玉米黄质。 PSI几乎没有新黄嘌呤。 LHC I的色素含量是通过从PSI中减去CC I的色素含量得出的。我们对深色适应植物中LHC IIb三聚体中类胡萝卜素含量的最佳估计是每摩尔三聚体中含有1个紫黄质,2种新黄质,6种叶黄素和0.03摩尔的花药黄质。叶黄素循环主要或仅在两个光系统的光收集触角内发生。

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    Lee, A I; Thornber, J P;

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  • 年度 1995
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