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血红素快速旋转对肌红蛋白氧结合的影响。

Consequence of rapid heme rotation to the oxygen binding of myoglobin.

作者信息

Neya S, Funasaki N, Shiro Y, Iizuka T, Imai K

机构信息

Department of Physical Chemistry, Kyoto Pharmaceutical University, Japan.

出版信息

Biochim Biophys Acta. 1994 Sep 21;1208(1):31-7. doi: 10.1016/0167-4838(94)90156-2.

Abstract

The myoglobin complexed with octamethylhemin was prepared. The visible absorption profiles are typical of general alkylhemin-substituted myoglobins, suggesting normal insertion of the hemin into the hydrophobic cavity. The NMR spectra of various ferric proteins were anomalous, without clearly resolved signals from the prosthetic group, most probably reflecting rapid heme rotation about the iron-histidine bond. The equilibrium and kinetic oxygen bindings were measured to examine the functional significance of the heme motion. Functional comparison with the myoglobin having immobile hemin indicates that rotation of the octamethylheme negligibly affects the myoglobin function. The results suggest that neither the heme peripheral contacts nor the proximal imidazole orientation about the heme normal is the dominant factor to control myoglobin function.

摘要

制备了与八甲基血红素复合的肌红蛋白。可见吸收光谱是一般烷基血红素取代肌红蛋白的典型光谱,表明血红素正常插入疏水腔。各种铁蛋白的核磁共振谱异常,没有来自辅基的清晰分辨信号,很可能反映了血红素围绕铁-组氨酸键的快速旋转。测量了平衡和动力学氧结合,以研究血红素运动的功能意义。与具有固定血红素的肌红蛋白进行功能比较表明,八甲基血红素的旋转对肌红蛋白功能的影响可忽略不计。结果表明,血红素的外周接触和血红素法线周围的近端咪唑取向都不是控制肌红蛋白功能的主导因素。

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