首页> 外文期刊>Photosynthesis Research >Absence of the psbH gene product destabilizes the Photosystem II complex and prevents association of the Photosystem II-X protein in the thermophilic cyanobacterium Thermosynechococcus elongatus BP-1
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Absence of the psbH gene product destabilizes the Photosystem II complex and prevents association of the Photosystem II-X protein in the thermophilic cyanobacterium Thermosynechococcus elongatus BP-1

机译:缺少psbH基因产物会破坏Photosystem II复合物的稳定性,并阻止嗜热蓝藻嗜热嗜中性球菌BP-1中Photosystem II-X蛋白的缔合。

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摘要

PS II-H is a small hydrophobic protein that is universally present in the PS II core complex of cyanobacteria and plants. The role of PS II-H was studied by directed mutagenesis and biochemical analysis in the thermophilic cyanobacterium Thermosynechococcus elongatus BP-1. The psbH disruptant could grow photoautotrophically; however, its growth was much slower than that of the wild type cell. Chromatography enabled the isolation of active oxygen-evolving PS II complexes from both the mutant and the wild type. The mutant yielded a relatively large amount of inactive PS II complex that lacked the following extrinsic proteins: the 33-kDa protein, the 12-kDa protein, and cytochrome c 550 . There were differences between the psbH disruptant and the wild type in terms of the oxygen evolution activities of the cells, thylakoids, and PS II complexes. At high concentrations of 2,6-DCBQ, the activity was much lower in the mutant than in the wild type. Gel filtration chromatography of the PS II complexes showed that both active and inactive PS II complexes isolated from the mutant were mostly in the monomeric form, while the active PS II complex from the wild type was in the dimeric form. The polypeptide composition of both active and inactive PS II complexes from the mutant showed the absence of another small polypeptide, PS II-X. These results suggest that the PS II-H protein is essential for stable assembly of native dimeric PS II complex containing PS II-X.
机译:PS II-H是一种小的疏水蛋白,普遍存在于蓝细菌和植物的PS II核心复合物中。通过定向诱变和生化分析研究了嗜热蓝藻嗜热嗜热球菌BP-1中PS II-H的作用。 psbH破坏剂可以自养生长。但是,它的生长要比野生型细胞慢得多。色谱法能够从突变型和野生型中分离出活性的放氧PS II复合物。该突变体产生了相对大量的无活性PS II复合物,该复合物缺少以下外部蛋白:33 kDa蛋白,12 kDa蛋白和细胞色素c 550 。就细胞,类囊体和PS II复合物的氧释放活性而言,psbH破坏剂与野生型之间存在差异。在高浓度的2,6-DCBQ中,突变体的活性比野生型低得多。 PS II复合物的凝胶过滤色谱法显示,从突变体分离出的活性和非活性PS II复合物都主要为单体形式,而野生型的活性PS II复合物为二聚体形式。来自该突变体的活性和非活性PS II复合物的多肽组成均显示不存在另一种小的多肽PS II-X。这些结果表明,PS II-H蛋白对于稳定组装包含PS II-X的天然二聚PS II复合物至关重要。

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