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首页> 外文期刊>Journal of Inorganic Biochemistry: An Interdisciplinary Journal >Ionic strength and pH effect on the Fe(III)-imidazolate bond in the heme pocket of horseradish peroxidase: an EPR and UV-visible combined approach
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Ionic strength and pH effect on the Fe(III)-imidazolate bond in the heme pocket of horseradish peroxidase: an EPR and UV-visible combined approach

机译:离子强度和pH对辣根过氧化物酶血红素口袋中Fe(III)-咪唑酸酯键的影响:EPR和UV可见的组合方法

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摘要

The effects of chloride, dihydrogenphosphate and ionic strength on the spectroscopic properties of horseradish peroxidase in aqueous solution at pH=3.0 were investigated. A red-shift (lambda =408 nm) of the Soret band was observed in the presence of 40 mM chloride; 500 mM dihydrogenphosphate or chloride brought about a blue shift of the same band (lambda =370 nm). The EPR spectrum of the native enzyme at pH 3.0 was characterized by the presence of two additional absorption bands in the region around g=6, with respect to pH 6.5. Chloride addition resulted in the loss of these features and in a lower rhombicity of the signal. A unique EPR band at g=6.0 was obtained as a result of the interaction between HRP and dihydrogenphosphate, both in the absence and presence of 40 mM Cl-. We suggest that a synergistic effect of low pH, Cl- and ionic strength is responsible for dramatic modifications of the enzyme conformation consistent with the Fe(III)-His170 bond cleavage. Dihydrogenphosphate as well as high chloride concentrations are shown to display an unspecific effect, related to ionic strength. A mechanistic explanation for the acid transition of HRP, previously observed by Smulevich et al. [Biochemistry 36 (1997) 640] and interpreted as a pure pH effect, is proposed. (C) 2000 Elsevier Science S.A. All rights reserved. [References: 29]
机译:研究了氯化物,磷酸二氢盐和离子强度对pH = 3.0的水溶液中辣根过氧化物酶光谱性质的影响。在存在40 mM氯化物的情况下,观察到Soret带的红移(λ= 408 nm)。 500 mM磷酸二氢盐或氯化物引起相同谱带的蓝移(λ= 370 nm)。相对于pH 6.5,在pH 3.0时,天然酶的EPR光谱的特征是在g = 6附近的区域中存在两个附加吸收带。添加氯化物会导致这些功能丧失,并降低信号的菱形。在不存在和存在40 mM Cl-的情况下,由于HRP和磷酸二氢盐之间的相互作用,在g = 6.0处获得了一个独特的EPR带。我们建议低pH,Cl-和离子强度的协同作用是酶构象与Fe(III)-His170键裂解一致的戏剧性修改的原因。磷酸二氢盐和高浓度的氯化物显示出与离子强度有关的非特异性作用。 Smulevich等人先前观察到的HRP酸转变的机理解释。提出了[Biochemistry 36(1997)640]并解释为纯pH效应。 (C)2000 Elsevier Science S.A.保留所有权利。 [参考:29]

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