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沼泽红假单胞菌细胞色素c2 pH依赖性构象状态的循环伏安法和1H核磁共振

Cyclic voltammetry and 1H-NMR of Rhodopseudomonas palustris cytochrome c2 pH-dependent conformational states.

作者信息

Battistuzzi G, Borsari M, Ferretti S, Sola M, Soliani E

机构信息

Department of Chemistry, University of Modena, Italy.

出版信息

Eur J Biochem. 1995 Aug 15;232(1):206-13. doi: 10.1111/j.1432-1033.1995.tb20800.x.

DOI:10.1111/j.1432-1033.1995.tb20800.x
PMID:7556152
Abstract

The pH-induced protein conformational transitions and changes in the ligation state of the heme iron in cytochrome c2 from Rhodopseudomonas palustris were monitored by electrochemical and spectroscopic measurements. In the pH range 1.5-11, the E degree values (and/or the peak potentials) determined by cyclic voltammetry, the electronic spectra and the hyperfine-shifted 1H-NMR resonances of the protein are sensitive to a number of acid/base equilibria. In particular, four equilibria have been determined for the oxidized protein with pKa values of 2.5, 5.5, 6.6 and 9.0. The lowest pKa most probably involves disruption of both axial heme iron bonds and protein unfolding. The subsequent pKa is associated with a low-pH oxidation of the protein by dioxygen, which is accompanied by a conformational change. The equilibrium with an apparent pKa of 6.6 modulates the E degree values without determining any detectable spectral change and most likely involves the acid/base equilibrium of an histidine residue in close vicinity of the heme (possibly His53). Finally, the alkaline ionization is due to the replacement of the methionine axially bound to the heme iron with a stronger (most probably N-donor) ligand. The reduced alkaline form is unstable and spontaneously converts to the neutral reduced form with a kinetic constant of 0.98 s-1 at pH 9.2.

摘要

通过电化学和光谱测量监测了来自沼泽红假单胞菌的细胞色素c2中pH诱导的蛋白质构象转变以及血红素铁配位状态的变化。在1.5 - 11的pH范围内,通过循环伏安法测定的E°值(和/或峰电位)、蛋白质的电子光谱以及超精细位移的1H-NMR共振对许多酸碱平衡敏感。特别地,已确定氧化态蛋白质存在四个平衡,其pKa值分别为2.5、5.5、6.6和9.0。最低的pKa最可能涉及轴向血红素铁键的断裂和蛋白质的去折叠。随后的pKa与蛋白质被双氧进行的低pH氧化有关,同时伴随着构象变化。表观pKa为6.6的平衡调节E°值,但未确定任何可检测到的光谱变化,并最可能涉及血红素附近一个组氨酸残基(可能是His53)的酸碱平衡。最后,碱性电离是由于轴向结合到血红素铁上的甲硫氨酸被更强的(最可能是N供体)配体取代。还原态的碱性形式不稳定,在pH 9.2时以0.98 s-1的动力学常数自发转化为中性还原形式。

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