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来自小鼠(Mus musculus)的血红蛋白晶体结构与来自其他小型动物和人类的血红蛋白晶体结构比较。

Crystal structure of hemoglobin from mouse (Mus musculus) compared with those from other small animals and humans.

机构信息

Department of Physics, Sir Theagaraya College, Chennai 600 021, India.

Protein Structure-Function Research Unit, School of Molecular and Cell Biology, University of the Witwatersrand, Braamfontein, Johannesburg 2050, South Africa.

出版信息

Acta Crystallogr F Struct Biol Commun. 2021 Apr 1;77(Pt 4):113-120. doi: 10.1107/S2053230X2100306X.

Abstract

Mice (Mus musculus) are nocturnal small animals belonging to the rodent family that live in burrows, an environment in which significantly high CO levels prevail. It is expected that mouse hemoglobin (Hb) plays an important role in their adaptation to living in such a high-CO environment, while many other species cannot. In the present study, mouse Hb was purified and crystallized at a physiological pH of 7 in the orthorhombic space group P222; the crystals diffracted to 2.8 Å resolution. The primary amino-acid sequence and crystal structure of mouse Hb were compared with those of mammalian Hbs in order to investigate the structure-function relationship of mouse Hb. Differences were observed from guinea pig Hb in terms of amino-acid sequence and from cat Hb in overall structure (in terms of r.m.s.d.). The difference in r.m.s.d. from cat Hb may be due to the existence of the molecule in a conformation other than the R-state. Analysis of tertiary- and quaternary-structural features, the α1β2 interface region and the heme environment without any ligands in all four heme groups showed that mouse methemoglobin is in an intermediate state between the R-state and the T-state that is much closer to the R-state conformation.

摘要

小鼠(Mus musculus)是属于啮齿动物科的夜行动物,生活在洞穴中,这种环境中 CO 水平非常高。据预测,小鼠血红蛋白(Hb)在适应这种高 CO 环境中起着重要作用,而许多其他物种则不能。在本研究中,小鼠 Hb 在生理 pH 值为 7 的条件下在正交空间群 P222 中被纯化和结晶;晶体的分辨率达到 2.8 Å。比较了小鼠 Hb 的一级氨基酸序列和晶体结构与哺乳动物 Hbs 的结构-功能关系,以研究其结构-功能关系。与豚鼠 Hb 相比,在氨基酸序列上存在差异,与猫 Hb 相比,在整体结构(均方根偏差)上存在差异。与猫 Hb 的均方根偏差差异可能是由于分子存在 R 态以外的构象。对三级和四级结构特征、α1β2 界面区域和没有任何配体的四个血红素基团的血红素环境的分析表明,小鼠高铁血红蛋白处于 R 态和 T 态之间的中间状态,与 R 态构象更为接近。

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