首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Photoassembly of the manganese cluster and oxygen evolution from monomeric and dimeric CP47 reaction center photosystem II complexes
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Photoassembly of the manganese cluster and oxygen evolution from monomeric and dimeric CP47 reaction center photosystem II complexes

机译:锰簇的光组装和单体和二聚体CP47反应中心光系统II配合物的氧释放

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摘要

Isolated subcomplexes of photosystem II from spinach (CP47RC), composed of D1, D2, cytochrome b559, CP47, and a number of hydrophobic small subunits but devoid of CP43 and the extrinsic proteins of the oxygen-evolving complex, were shown to reconstitute the Mn4Ca1Clx cluster of the water-splitting system and to evolve oxygen. The photoactivation process in CP47RC dimers proceeds by the same two-step mechanism as observed in PSII membranes and exhibits the same stoichiometry for Mn2+, but with a 10-fold lower affinity for Ca2+ and an increased susceptibility to photodamage. After the lower Ca2+ affinity and the 10-fold smaller absorption cross-section for photons in CP47 dimers is taken into account, the intrinsic rate constant for the rate-limiting calcium-dependent dark step is indistinguishable for the two systems. The monomeric form of CP47RC also showed capacity to photoactivate and catalyze water oxidation, but with lower activity than the dimeric form and increased susceptibility to photodamage. After optimization of the various parameters affecting the photoactivation process in dimeric CP47RC subcores, 18% of the complexes were functionally reconstituted and the quantum efficiency for oxygen production by reactivated centers approached 96% of that observed for reconstituted photosystem II-enriched membranes.
机译:从菠菜(CP47RC)分离的光系统II的亚复合物,由D1,D2,细胞色素b559,CP47和许多疏水性小亚基组成,但不含CP43和无氧复合物的外在蛋白质,显示出可重构Mn4Ca1Clx团簇的水分解系统并释放出氧气。 CP47RC二聚体中的光活化过程通过与PSII膜相同的两步机理进行,对Mn 2 + 的化学计量相同,但对Ca 2的亲和力低10倍+ 并增加了对光损伤的敏感性。考虑到较低的Ca 2 + 亲和力和CP47二聚体中光子的吸收截面小10倍后,限速钙依赖性暗步的固有速率常数无法区分对于两个系统。 CP47RC的单体形式还显示出光活化和催化水氧化的能力,但活性低于二聚体形式,并增加了对光损伤的敏感性。优化影响二聚体CP47RC亚核中光激活过程的各种参数后,功能上的复合物将重构18%,通过重新激活的中心产生氧气的量子效率接近重构的富集光系统II的膜所观察到的效率的96%。

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