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Unusual Properties of Plastocyanin from the Fern Dryopteris crassirhizoma

机译:蕨Dryopteris crassirhizoma的Plastocyanin的异常性质

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The effect of pH on the ~1H NMR spectrum, reduction potential, and self-exchange rate constant of the novel plastocyanin (PCu) from the fern plant Dryopteris crassirhizoma has been studied. The results are compared with those for the higher-plant PCu from parsley. In the ~1H NMR spectrum of D. crassirhizoma PCu(I), there is no sign that either of the His ligands is protonated at pH down to 5.4. The reduction potentials of D. crassirhizoma and parsley PCu are 382 and 379 mV, respectively, at pH 7.4. When the pH value is decreased, the reduction potential of parsley PCu is seen to increase quite dramatically, consisten with protonation at His87 in PCu(I). A pK_a of 5.8 is obtained from the electrochemistry data, consistent with a value of 5.6 determined by NMR. The reduction potential of D. crassirhizoma PCu exhibits a much less pronounced dependence on pH. The self-exchange rate constat of D. crassirhizoma PCu(I) is 3.4 X 10~3 M~(-1) s~(-1) at pH 7.9. This is the smallest self-exchange rate constant reported to date for a PCu and can be rationalized by considering the altered distribution of charged residues on the surface of the D. crassirhizoma protein compared to the charge distributions of other higher-plant PCus. The self-exchange rate constant increases to 9 X 10~3 M~(-1) s~(-1) at pH 5.4, consistent with enhanced protein-protein association at lower pH, and the absence of His87 protonation in D. crassirhizoma PCu(I) in the accessible pH range.
机译:研究了pH对蕨类植物Dryopteris crassirhizoma的新型质体蓝蛋白(PCu)的〜1H NMR光谱,还原电势和自交换速率常数的影响。将结果与欧芹中较高植物的PCu进行比较。在D. crassirhizoma PCu(I)的〜1H NMR光谱中,没有迹象表明任何His配体都在pH降至5.4时被质子化。在pH 7.4时,D。crassirhizoma和欧芹PCu的还原电位分别为382和379 mV。当pH值降低时,欧芹PCu的还原电位将显着增加,这与PCu(I)中His87的质子化有关。从电化学数据获得5.8的pK_a,与通过NMR确定的5.6的值一致。 D. crassirhizoma PCu的还原电位表现出对pH的依赖性要小得多。在pH 7.9的条件下,D。crassirhizoma PCu(I)的自交换速率常数为3.4 X 10〜3 M〜(-1)s〜(-1)。这是迄今为止报道的PCu最小的自交换速率常数,可以通过考虑与其他高等植物PCus的电荷分布相比,在D. crassirhizoma蛋白表面上带电残基的分布发生变化来合理化。在pH 5.4时,自交换速率常数增加至9 X 10〜3 M〜(-1)s〜(-1),这与较低pH下蛋白质-蛋白质缔合的增强以及在D. crassirhizoma中缺乏His87质子在可访问的pH范围内PCu(I)。

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