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pH对嗜甲基甲基ophilus甲基otrophus细胞色素c"和马心细胞色素c轴向配体配位的影响。

Effect of pH on axial ligand coordination of cytochrome c" from Methylophilus methylotrophus and horse heart cytochrome c.

作者信息

Indiani C, de Sanctis G, Neri F, Santos H, Smulevich G, Coletta M

机构信息

Dipartimento di Chimica, Università di Firenze, Via Gino Capponi 9, I-50121 Firenze, Italy.

出版信息

Biochemistry. 2000 Jul 18;39(28):8234-42. doi: 10.1021/bi000266i.

Abstract

The effect of protons on the axial ligand coordination and on structural aspects of the protein moiety of cytochrome c' ' from Methylophilus methylotrophus, an obligate methylotroph, has been investigated down to very low pH (i.e., 0.3). The unusual resistance of this cytochrome to very low pH values has been exploited to carry out this study in comparison with horse heart cytochrome c. The experiments were undertaken at a constant phosphate concentration to minimize the variation of ionic strength with pH. The pH-linked effects have been monitored at 23 degrees C in the oxidized forms of both cytochromes by following the variations in the electronic absorption, circular dichroism and resonance Raman spectra. This approach has enabled the conformational changes of the heme surroundings to be monitored and compared with the concomitant overall structural rearrangements of the molecule. The results indicate that horse heart cytochrome c undergoes a first conformational change at around pH 2.0. This event is possibly related to the cleavage of the Fe-Met80 bond and a likely coordination of a H(2)O molecule as a sixth axial ligand. Conversely, in cytochrome c" from M. methylotrophus, a variation of the axial ligand coordination occurs at a pH that is about 1 unit lower. Further, it appears that a concerted cleavage of both His ligands takes place, suggesting indeed that the different axial ligands present in horse heart cytochrome c (Met/His) and in cytochrome c" from M. methylotrophus (His/His) affect the heme conformational changes.

摘要

已对质子对专性甲基营养菌嗜甲基甲基ophilus细胞色素c''的轴向配体配位以及蛋白质部分结构方面的影响进行了研究,研究范围低至非常低的pH值(即0.3)。利用这种细胞色素对极低pH值的异常抗性,与马心细胞色素c进行比较来开展这项研究。实验在恒定的磷酸盐浓度下进行,以尽量减少离子强度随pH值的变化。通过跟踪电子吸收、圆二色性和共振拉曼光谱的变化,在23摄氏度下监测了两种细胞色素氧化形式的pH相关效应。这种方法能够监测血红素周围环境的构象变化,并与分子伴随的整体结构重排进行比较。结果表明,马心细胞色素c在pH约为2.0时发生首次构象变化。这一事件可能与Fe-Met80键的断裂以及作为第六个轴向配体的H2O分子的可能配位有关。相反,在嗜甲基甲基ophilus的细胞色素c''中,轴向配体配位的变化发生在低约1个单位的pH值下。此外,似乎两个组氨酸配体都发生了协同断裂,这确实表明马心细胞色素c(Met/His)和嗜甲基甲基ophilus的细胞色素c''(His/His)中存在的不同轴向配体影响了血红素的构象变化。

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