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Protonation of a Histidine Copper Ligand in Fern Plastocyanin

机译:蕨类植物花青素中组氨酸铜配体的质子化

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Plastocyanin is a small blue copper protein that shuttles electrons as part of the photosynthetic redox chain. Its redox behavior is changed at low pH as a result of protonation of the solvent-exposed copper-coordinating histidine. Protonation and subsequent redox inactivation could have a role in the down regulation of photosynthesis. As opposed to plastocyanin from other sources, in fern plastocyanin His90 protonation at low pH has been reported not to occur. Two possible reasons for that have been proposed: π-π stacking between Phe12 and His90 and lack of a hydrogen bond with the backbone oxygen of Gly36. We have produced this fern plastocyanin recombinantly and examined the properties of wild-type protein and mutants Phe12Leu, Gly36Pro, and the double mutant with NMR spectroscopy, X-ray crystallography, and cyclic voltammetry. The results demonstrate that, contrary to earlier reports, protonation of His90 in the wild-type protein does occur in solution with a pK_a of 4.4 (±0.1). Neither the single mutants nor the double mutant exhibit a change in protonation behavior, indicating that the suggested interactions have no influence. The crystal structure at low pH of the Gly36Pro variant does not show His90 protonation, similar to what was found for the wild-type protein. The structure suggests that movement of the imidazole ring is hindered by crystal contacts. This study illustrates a significant difference between results obtained in solution by NMR and by crystallography.
机译:藻蓝蛋白是一种小的蓝色铜蛋白,可将电子作为光合作用的氧化还原链的一部分传递出去。由于暴露于溶剂的铜配位组氨酸的质子化作用,因此在低pH下其氧化还原行为发生了变化。质子化和随后的氧化还原失活可能在光合作用的下调中起作用。与其他来源的质体花青素相反,据报道蕨类植物中的质体花青素在低pH下不会发生His90质子化。已经提出了两个可能的原因:Phe12和His90之间的π-π堆积以及与Gly36的主链氧缺乏氢键。我们已经重组生产了这种蕨类植物质体蓝蛋白,并通过NMR光谱,X射线晶体学和循环伏安法检查了野生型蛋白质和突变体Phe12Leu,Gly36Pro以及双突变体的特性。结果表明,与早期报道相反,野生型蛋白质中His90的质子化确实在溶液中发生,pK_a为4.4(±0.1)。单突变体和双突变体均未表现出质子化行为的变化,表明所建议的相互作用没有影响。与野生型蛋白质相似,Gly36Pro变体在低pH值下的晶体结构未显示His90质子化。该结构表明,咪唑环的移动受到晶体接触的阻碍。这项研究说明了在溶液中通过NMR和晶体学获得的结果之间存在显着差异。

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