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影响锰或钙与光系统II结合的氨基酸残基。1. D1多肽的腔内侧螺旋结构域。

Amino acid residues that influence the binding of manganese or calcium to photosystem II. 1. The lumenal interhelical domains of the D1 polypeptide.

作者信息

Chu H A, Nguyen A P, Debus R J

机构信息

Department of Biochemistry, University of California at Riverside 92521-0129, USA.

出版信息

Biochemistry. 1995 May 2;34(17):5839-58. doi: 10.1021/bi00017a016.

Abstract

To identify amino acid residues that ligate the manganese and calcium ions of photosystem II or that are otherwise crucial to water oxidation, site-directed mutations were constructed in the unicellular cyanobacterium Synechocystis sp. PCC 6803 at all conserved carboxylate, histidine, and tyrosine residues in the lumenal interhelical domains of the D1 polypeptide. Mutants with impaired photoautotrophic growth or oxygen evolution were characterized in vivo by measuring changes in the yield of variable chlorophyll a fluorescence after a saturating flash or brief illumination given in the presence of an electron-transfer inhibitor or following each in a series of saturating flashes given in the absence of inhibitor [Chu, H.-A., Nguyen, A. P., & Debus, R. J. (1994) Biochemistry 33, 6137-6149]. Mutants were also characterized after propagation in media having other cations substituted for calcium. We conclude that Asp-59 and Asp-61 may ligate calcium, that Asp-59, Asp-61, Glu-65, and His-92 influence the properties of the manganese cluster without significantly affecting its stability or ability to assemble, that Glu-189 plays an important structural role in maintaining the catalytic efficiency of the Mn cluster and partly influences the cluster's stability or ability to assemble, that His-92 and Glu-189 influence the binding of calcium, and that His-190 strongly influences the redox properties of the secondary electron donor, YZox, and either ligates manganese or serves as a crucial base or hydrogen bond donor. In addition, we conclude that Asp-170 may ligate manganese, but that its replacement with Val, Leu, or Ile causes structural perturbations that partly compensate for the loss of the carboxylate moiety.

摘要

为了鉴定与光系统II的锰离子和钙离子结合的氨基酸残基,或者对水氧化至关重要的其他氨基酸残基,在单细胞蓝藻集胞藻PCC 6803中,针对D1多肽腔内侧螺旋结构域中所有保守的羧酸盐、组氨酸和酪氨酸残基构建了定点突变体。通过在电子传递抑制剂存在下给予饱和闪光或短暂光照后,或者在无抑制剂的情况下给予一系列饱和闪光后,测量可变叶绿素a荧光产量的变化,对光合自养生长或放氧受损的突变体进行体内表征[Chu, H.-A., Nguyen, A. P., & Debus, R. J. (1994) Biochemistry 33, 6137 - 6149]。在含有其他阳离子替代钙的培养基中传代培养后,也对突变体进行了表征。我们得出结论:Asp-59和Asp-61可能与钙结合;Asp-59、Asp-61、Glu-65和His-92影响锰簇的性质,但对其稳定性或组装能力没有显著影响;Glu-189在维持锰簇的催化效率方面起重要的结构作用,并部分影响簇的稳定性或组装能力;His-92和Glu-189影响钙的结合;His-190强烈影响二级电子供体YZox的氧化还原性质,并且要么与锰结合,要么作为关键碱基或氢键供体。此外,我们得出结论:Asp-170可能与锰结合,但其被Val、Leu或Ile取代会引起结构扰动,部分补偿羧酸盐部分的损失。

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