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草履虫血红蛋白的三价铁和二价铁状态下的配体结合

Ligand binding in the ferric and ferrous states of Paramecium hemoglobin.

作者信息

Das T K, Weber R E, Dewilde S, Wittenberg J B, Wittenberg B A, Yamauchi K, Van Hauwaert M L, Moens L, Rousseau D L

机构信息

Department of Physiology and Biophysics, Albert Einstein College of Medicine, 1300 Morris Park Avenue, Bronx, New York 10461, USA.

出版信息

Biochemistry. 2000 Nov 21;39(46):14330-40. doi: 10.1021/bi001681d.

Abstract

The unicellular protozoan Paramecium caudatum contains a monomeric hemoglobin (Hb) that has only 116 amino acid residues. This Hb shares the simultaneous presence of a distal E7 glutamine and a B10 tyrosine with several invertebrate Hbs. In the study presented here, we have used ligand binding kinetics and resonance Raman spectroscopy to characterize the effect of the distal pocket residues of Paramecium Hb in stabilizing the heme-bound ligands. In the ferric state, the high-spin to low-spin (aquo-hydroxy) transition takes place with a pK(a) of approximately 9.0. The oxygen affinity (P(50) = 0.45 Torr) is similar to that of myoglobin. The oxygen on- and off-rates are also similar to those of sperm whale myoglobin. Resonance Raman data suggest hydrogen bonding stabilization of bound oxygen, evidenced by a relatively low frequency of Fe-OO stretching (563 cm(-1)). We propose that the oxy complex is an equilibrium mixture of a hydrogen-bonded closed structure and an open structure. Oxygen will dissociate preferentially from the open structure, and therefore, the fraction of open structure population controls the rate of oxygen dissociation. In the CO complex, the Fe-CO stretching frequency at 493 cm(-1) suggests an open heme pocket, which is consistent with the higher on- and off-rates for CO relative to those in myoglobin. A high rate of ligand binding is also consistent with the observation of an Fe-histidine stretching frequency at 220 cm(-1), indicating the absence of significant proximal strain. We postulate that the function of Paramecium Hb is to supply oxygen for cellular oxidative processes.

摘要

单细胞原生动物尾草履虫含有一种单体血红蛋白(Hb),其仅有116个氨基酸残基。这种血红蛋白与几种无脊椎动物的血红蛋白一样,同时存在远端E7谷氨酰胺和B10酪氨酸。在本文所呈现的研究中,我们利用配体结合动力学和共振拉曼光谱来表征尾草履虫血红蛋白远端口袋残基在稳定血红素结合配体方面的作用。在铁离子状态下,高自旋到低自旋(水合羟基)的转变发生时的pK(a)约为9.0。氧亲和力(P(50)=0.45托)与肌红蛋白相似。氧的结合和解离速率也与抹香鲸肌红蛋白相似。共振拉曼数据表明结合氧存在氢键稳定作用,这由相对较低的Fe-OO伸缩频率(563厘米-1)所证明。我们提出氧复合物是氢键结合的封闭结构和开放结构的平衡混合物。氧将优先从开放结构中解离,因此,开放结构群体的比例控制着氧解离的速率。在一氧化碳复合物中,493厘米-1处的Fe-CO伸缩频率表明血红素口袋是开放的,这与一氧化碳相对于肌红蛋白更高的结合和解离速率一致。高的配体结合速率也与220厘米-1处的Fe-组氨酸伸缩频率的观察结果一致,表明不存在显著的近端应变。我们推测尾草履虫血红蛋白的功能是为细胞氧化过程提供氧气。

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