首页> 外文期刊>Biophysical Chemistry: An International Journal Devoted to the Physical Chemistry of Biological Phenomena >Alpha-subunit oxidation in T-state crystals of a sebacyl cross-linked human hemoglobin with unusual autoxidation properties.
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Alpha-subunit oxidation in T-state crystals of a sebacyl cross-linked human hemoglobin with unusual autoxidation properties.

机译:皮脂酰交联的人类血红蛋白的T态晶体中的α亚基氧化,具有异常的自氧化特性。

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摘要

In the crystal structure of human T-state hemoglobin with a sebacyl residue cross-linking the two beta-subunit Lys82,s (DecHb), the Fe atoms of the alpha-subunit hemes are found to be oxidized with a water molecule bound. The three-dimensional structure and heme geometries were compared to those of deoxyhemoglobin and other partially and fully oxidized hemoglobins [R. Liddington, Z. Derewenda, E. Dodson, R. Hubbard, G. Dodson, J. Mol. Biol. 228 (1992) 551]. The heme geometries of the alpha-subunits are consistent with those observed in oxidized structures. The proximal histidines of the alpha-subunits move toward the heme plane shifting the F-helix and FG-corner in a manner observed for partially oxidized human hemoglobin. This supports the hypothesis that these perturbations may precede the T- to R-state transition. Circular dichroism studies comparing DecHb and natural human hemoglobin in the deoxy and CO ligated forms confirm that the conformations of the deoxy forms are identical, but the ligated forms have slight differences in the solution structures. DecHb is found to be more resistant to autoxidation than natural hemoglobin. The time course of autoxidation of DecHb shows that it is virtually absent for the first 1500 min followed by a rapid increase. Thus, the discovery of the oxidation of the alpha-subunits in the deoxy-crystals is quite unexpected. The data confirm that ligation of the alpha-subunits precedes that of the beta-subunits. This may suggest a low ligand affinity of the alpha-diligated form of hemoglobin.
机译:在具有两个两个B亚基Lys82,s(DecHb)交联的癸二酰基残基的人T状态血红蛋白的晶体结构中,发现α亚基血红素的Fe原子被结合的水分子氧化。比较了三维结构和血红素几何形状与脱氧血红蛋白及其他部分和完全氧化的血红蛋白的几何结构[R. Liddington,Z.Derewenda,E.Dodson,R.Hubbard,G.Dodson,J.Mol。生物学228(1992)551]。 α-亚基的血红素几何形状与在氧化结构中观察到的一致。 α-亚基的近端组氨酸向血红素平面移动,使F-螺旋和FG-角以对部分氧化的人类血红蛋白观察到的方式移动。这支持了以下假设:这些扰动可能先于T状态过渡到R状态。比较DecHb和天然人血红蛋白的脱氧和CO连接形式的圆二色性研究证实,脱氧形式的构象相同,但连接形式在溶液结构上略有不同。发现DecHb比天然血红蛋白更能抵抗自氧化。 DecHb的自氧化时间过程表明,在最初的1500分钟内实际上不存在,随后迅速增加。因此,在脱氧晶体中发现α-亚基的氧化是非常出乎意料的。数据证实α-亚基的连接先于β-亚基的连接。这可能表明血红蛋白的α-二聚形式的配体亲和力低。

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