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A novel protein involved in the functioal assembly of the oxyen-evolving complex of phootosystem II in synechocystis sp.PCC 6803

机译:一种新型蛋白,参与到集囊藻sp.PCC 6803中光系统II的释氧复合物的功能组装中

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Mutation of Glu69 to Gin in the D2 protein of photosystem II is known to lead to a loss of photoautotrophic growth in Synechocystis sp. PCC 6803. However, second-site mutants (pseudorevertants) with restored photoautotrophic growth but still maintaining the E69Q mutation in D2 are easily obtained. Using a genomic mapping technique involving functional complementation, the secondary mutation was mapped to s1r0286 in two independent mutants. The mutations in Slr0286 were R42M or R394H. To study the function of Slr0286, mutants of E69Q and of the wild-type strain were made that lacked s1r0286. Deletion of s1r0286 did not affect photoautotrophic capacity in wild type but led to a marked decrease in the apparent affinity of Ca~(2+) to its binding site at the water-splitting system of photosystem II and to a reduced heat tolerance of the oxygen-evolving system, particularly in E69Q. Moreover, a small increase in the half-time for photoactivation of the oxygen-evolving complex of photosystem II for both wild type and the E69Q mutant was observed in the absence of Slr0286. The accumulation of photosystem II reaction centers, dark stability of the oxygen-evolving apparatus, stability of oxygen evolution, and the kinetics of charge recombination between Q~ and the donor side were not affected by deletion of s1r0286. SlrO286 lacks clear functional motifs, and no homologues are apparent in other organisms, even not in other cyanobacteria. In any case, Slr0286 appears to help the functional assembly and stability of the water-splitting system of photosystem II.
机译:已知光系统II的D2蛋白中Glu69突变为Gin会导致集胞藻(Synechochocystis sp。)光合养分丧失。 PCC6803。但是,很容易获得具有恢复的光合自养生长但仍保持D2中E69Q突变的第二位突变体(假回复体)。使用涉及功能互补的基因组定位技术,将二级突变定位于两个独立突变体中的s1r0286。 Slr0286中的突变是R42M或R394H。为了研究Slr0286的功能,制备了缺乏s1r0286的E69Q和野生型菌株的突变体。删除s1r0286不会影响野生型的自养能力,但会导致Ca〜(2+)在光系统II的水分解系统上与其结合位点的表观亲和力显着降低,并降低了氧气的耐热性-不断发展的系统,特别是在E69Q中。此外,在不存在Slr0286的情况下,对于野生型和E69Q突变体,都观察到光激活系统II的放氧复合物的光激活半衰期略有增加。 s1r0286的缺失不影响光系统II反应中心的积累,析氧装置的黑暗稳定性,析氧的稳定性以及Q〜和供体侧之间的电荷重组动力学。 SlrO286缺乏清楚的功能基序,并且在其他生物中甚至在其他蓝细菌中都没有明显的同源物。无论如何,Slr0286似乎有助于光系统II的水分解系统的功能组装和稳定性。

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