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氰化物从马副蛔虫血红蛋白中的解离

Cyanide dissociation from the hemoglobin of Parascaris equorum.

作者信息

Antonini G, Bellelli A, Concetti A, Falcioni G, Brunori M

机构信息

Department of Biochemical Sciences, University of Rome La Sapienza, Italy.

出版信息

Biochim Biophys Acta. 1994 Apr 13;1205(2):252-7. doi: 10.1016/0167-4838(94)90241-0.

Abstract

The reduction of cyanomethemoglobin by dithionite leads to the appearance of an intermediate, the complex of cyanide with ferrous hemoglobin, whose dissociation is easily followed in a stopped flow apparatus. This reaction was studied in the hemoglobin from the parasitic nematode Parascaris equorum, whose extremely high oxygen affinity is due to a very low dissociation rate. The rate of cyanide dissociation from ferrous Parascaris hemoglobin is not so dramatically different from that of other hemoglobins and myoglobins. Other features of the reaction are: (i) the rate constant of cyanide release is pH independent, an observation which is agreement with the possible absence of the distal histidine, given the mechanism suggested in a previous study (Bellelli, A., Antonini, G., Brunori, M, Springer, B.A. and Sligar, S.G. (1990) J. Biol. Chem. 265, 18898-18901), and (ii) the time-course shows no kinetic cooperativity. The structural basis of the extremely high oxygen affinity of Parascaris hemoglobin cannot be explained on the basis of the results here reported. This study also confirms that, even though cyanide binding to ferrous hemoglobins is controlled by distal interactions, the functional behaviour of this ligand is characteristic and differs from the behaviour of oxygen.

摘要

连二亚硫酸盐还原氰化高铁血红蛋白会产生一种中间体,即氰化物与亚铁血红蛋白的复合物,其解离过程在停流装置中很容易跟踪。对寄生线虫马副蛔虫的血红蛋白进行了该反应的研究,其极高的氧亲和力归因于极低的解离速率。亚铁马副蛔虫血红蛋白中氰化物的解离速率与其他血红蛋白和肌红蛋白的解离速率并没有显著差异。该反应的其他特点是:(i)氰化物释放的速率常数与pH无关,鉴于先前一项研究(Bellelli, A., Antonini, G., Brunori, M, Springer, B.A. 和 Sligar, S.G. (1990) J. Biol. Chem. 265, 18898 - 18901)提出的机制,这一观察结果与可能不存在远端组氨酸相符;(ii)时间进程显示没有动力学协同性。根据此处报道的结果,无法解释马副蛔虫血红蛋白极高氧亲和力的结构基础。该研究还证实,尽管氰化物与亚铁血红蛋白的结合受远端相互作用控制,但这种配体的功能行为具有特征性,与氧的行为不同。

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