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华丽磷虾脱卤过氧化物酶血红蛋白远端口袋中底物内化的决定因素。

Determinants of substrate internalization in the distal pocket of dehaloperoxidase hemoglobin of Amphitrite ornata.

作者信息

Nienhaus Karin, Nickel Elena, Davis Michael F, Franzen Stefan, Nienhaus G Ulrich

机构信息

Institute of Biophysics, University of Ulm, Albert-Einstein-Allee 11, 89081 Ulm, Germany.

出版信息

Biochemistry. 2008 Dec 9;47(49):12985-94. doi: 10.1021/bi801564r.

Abstract

Dehaloperoxidase (DHP) is a small heme protein in the coelom of the terebellid polychaete Amphitrite ornata. It can act both as an oxygen storage protein (hemoglobin function) and as a dehaloperoxidase (peroxidase function). The X-ray structure of the ferric form shows that the phenolic substrate can bind inside the protein, which is not the case for a typical peroxidase. In the present study, we have used CO-ligated DHP to mimic the distal pocket of the peroxidase DHP and to probe under which conditions both a halophenol and a diatomic ligand can be accommodated in the distal pocket. To vary the structure of the distal pocket, we have compared wild-type DHP and mutants H55V and H55R at different pH values, using flash photolysis in the visible and FTIR spectroscopy in the CO stretching bands. The latter technique is extremely sensitive to even small structural changes in the CO environment and thus can report substrate binding in the distal pocket. Our results on wild-type DHP and its variants indicate that halophenols and a diatomic ligand can indeed simultaneously be present in the distal pocket if the distal histidine is in the low-pH conformation, in which its side chain is swung out of the distal pocket. The markedly different pH dependencies of enzyme activity and substrate binding are not consistent with the hypothesis that substrate dehalogenation occurs within the interior of DHP.

摘要

脱卤过氧化物酶(DHP)是多毛纲缨鳃虫Amphitrite ornata体腔中的一种小型血红素蛋白。它既可以作为氧储存蛋白发挥作用(血红蛋白功能),也可以作为脱卤过氧化物酶发挥作用(过氧化物酶功能)。高铁形式的X射线结构表明,酚类底物可以结合在蛋白质内部,这与典型的过氧化物酶情况不同。在本研究中,我们使用一氧化碳结合的DHP来模拟过氧化物酶DHP的远端口袋,并探究在何种条件下卤代酚和双原子配体都能容纳在远端口袋中。为了改变远端口袋的结构,我们在不同pH值下比较了野生型DHP以及突变体H55V和H55R,采用可见光闪光光解和一氧化碳伸缩带的傅里叶变换红外光谱技术。后一种技术对一氧化碳环境中即使很小的结构变化都极其敏感,因此可以报告远端口袋中的底物结合情况。我们对野生型DHP及其变体的研究结果表明,如果远端组氨酸处于低pH构象,其侧链从远端口袋中摆动出来,卤代酚和双原子配体确实可以同时存在于远端口袋中。酶活性和底物结合对pH的显著不同依赖性与底物脱卤发生在DHP内部的假设不一致。

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