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pH对亚铁辣根过氧化物酶和细胞色素c过氧化物酶的一氧化氮及脱氧衍生物中血红素铁配位状态的影响。

pH effects on the haem iron co-ordination state in the nitric oxide and deoxy derivatives of ferrous horseradish peroxidase and cytochrome c peroxidase.

作者信息

Ascenzi P, Brunori M, Coletta M, Desideri A

机构信息

C.N.R. Center for Molecular Biology, University of Rome La Sapienza, Italy.

出版信息

Biochem J. 1989 Mar 1;258(2):473-8. doi: 10.1042/bj2580473.

Abstract

The spectral (e.p.r. and absorbance) properties of the NO and deoxy derivatives of ferrous horseradish peroxidase (HRP; EC 1.11.1.7) and baker's-yeast cytochrome c peroxidase (CCP; EC 1.11.1.5) were investigated between pH 7 and pH 2; over the same pH range the kinetics for CO binding were also determined. At neutral pH the e.p.r. and absorption spectra of the NO and deoxy derivatives of HRP and CCP are typical of systems in which the haem iron is in the hexaco-ordinated state and the pentaco-ordinated state respectively. By lowering pH, the e.p.r. and absorption spectra of HRP and CCP undergo reversible transitions, with pKa values of 4.1 for the NO derivatives and less than or equal to 3 for the deoxy derivatives of the ferrous forms. By analogy with O2-carrying proteins and haem model compounds, the pH-dependent spectral changes of HRP and CCP were interpreted as indicative of the protonation of the N(epsilon) atom of the proximal histidine residue and of the cleavage of the Fe-N(epsilon) bond. However, the slow second-order rate constant (0.003 microM-1.s-1) for CO binding to deoxy ferrous HRP and CCP does not increase substantially even at pH 2.6, suggesting that changes in the Fe-haem plane geometry, presumably associated with the cleavage of the Fe-N(epsilon) bond, do not affect appreciably the observed ligand association rate constant.

摘要

研究了亚铁辣根过氧化物酶(HRP;EC 1.11.1.7)和面包酵母细胞色素c过氧化物酶(CCP;EC 1.11.1.5)的一氧化氮(NO)和脱氧衍生物在pH 7至pH 2之间的光谱(电子顺磁共振和吸光度)特性;在相同pH范围内还测定了一氧化碳(CO)结合的动力学。在中性pH条件下,HRP和CCP的NO和脱氧衍生物的电子顺磁共振和吸收光谱分别是血红素铁处于六配位状态和五配位状态的典型光谱。通过降低pH,HRP和CCP的电子顺磁共振和吸收光谱发生可逆转变,亚铁形式的NO衍生物的pKa值为4.1,脱氧衍生物的pKa值小于或等于3。与携带氧气的蛋白质和血红素模型化合物类似,HRP和CCP的pH依赖性光谱变化被解释为近端组氨酸残基的N(ε)原子质子化和Fe-N(ε)键断裂的指示。然而,即使在pH 2.6时,CO与脱氧亚铁HRP和CCP结合的二级反应速率常数(0.003 μM-1·s-1)也没有显著增加,这表明与Fe-N(ε)键断裂相关的Fe-血红素平面几何结构变化并未明显影响观察到的配体缔合速率常数。

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