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The Main Structural and Functional Characteristics of Photosystem-II-Enriched Membranes Isolated from Wild Type and cia3 Mutant Chlamydomonas reinhardtii

机译:从野生型和CIA3突变体骨髓瘤中分离的照相系统-II的富含膜的主要结构和功能特征。Reinhardtii

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摘要

Photosystem II (PSII)-enriched membranes retain the original PSII architecture in contrast to PSII cores or PSII supercomplexes, which are usually isolated from Chlamydomonas reinhardtii. Here, we present data that fully characterize the structural and functional properties of PSII complexes in isolated PSII-enriched membranes from C. reinhardtii. The preparations were isolated from wild-type (WT) and CAH3-deficient mutant cia3 as the influence of CAH3 on the PSII function was previously proposed. Based on the equal chlorophyll content, the PSII-enriched membranes from WT and cia3 have the same amount of reaction centers (RCs), cytochrome b559, subunits of the water-oxidizing complex, Mn ions, and carotenes. They differ in the ratio of other carotenoids, the parts of low/intermediate redox forms of cytochrome b559, and the composition of outer light-harvesting complexes. The preparations had 40% more chlorophyll molecules per RC compared to higher plants. Functionally, PSII-enriched membranes from WT and cia3 show the same photosynthetic activity at optimal pH 6.5. However, the preparations from cia3 contained more closed RCs even at pH 6.5 and showed more pronounced suppression of PSII photosynthetic activity at shift pH up to 7.0, established in the lumen of dark-adapted cells. Nevertheless, the PSII photosynthetic capacities remained the same.
机译:与PSII核心或PSII超级复合物相比,光电系统II(PSII)-ENRICHED膜与PSII核心或PSII超级复合物保持对比。通常从衣原体中分离出来。在这里,我们呈现完全表征PSII复合物的结构和功能性质的数据,从C. Reinhardtii中的富含富含Psii-富含膜中的结构和功能性质。从野生型(WT)和CaH3缺陷型突变体CIA3中分离的制剂,因为先前提出了CAH3对PSII功能的影响。基于同等叶绿素含量,来自WT和CIA3的PSII富含膜具有相同的反应中心(RCS),细胞色素B559,水氧化复合物,Mn离子和吻合的亚基。它们与其他类胡萝卜素,低/中间氧化还原形式的细胞色素B559的零件的比例不同,以及外光收获配合物的组成。与高等植物相比,每次RC的叶绿素分子具有40%的叶绿素分子。在功能上,来自WT和CIA3的PSII富含膜在最佳pH6.5时显示出相同的光合活性。然而,即使在pH 6.5,CIA3的制剂也含有更闭合的RCS,并且在黑暗适应细胞内部成立的情况下,在换档pH值下均匀抑制PSII光合活性更明显的PSII光合活性。然而,PSII光合能力保持不变。

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