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首页> 外文期刊>Biochemistry >The role of beta chains in the control of the hemoglobin oxygen binding function: chimeric human/mouse proteins, structure, and function.
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The role of beta chains in the control of the hemoglobin oxygen binding function: chimeric human/mouse proteins, structure, and function.

机译:β链在控制血红蛋白氧结合功能中的作用:嵌合的人/小鼠蛋白质,结构和功能。

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摘要

By using transgenic methodologies, we have produced a number of mouse/human chimeric hemoglobins containing adult mouse and human embryonic globin chains. A detailed analysis of the oxygen binding properties of these proteins identifies the dominant role played by the specific beta-type globin chains in the control of the oxygen binding characteristics. Further analysis traces the origins of these effects to alterations in the properties of the T states of these proteins. The human zeta/mouse beta chimeric protein has been crystallized, and its structure has been determined by X-ray diffraction to a resolution of 2.1 A with R (R(free)) values of 21.6% (24.9%). Close examination of the structure indicates that the subunit interfaces contain contacts which, although different from those present in either the parent human or the parent mouse proteins, retain the overall stabilizing interactions seen in other R state hemoglobins.
机译:通过使用转基因方法,我们已经产生了许多含有成年小鼠和人胚胎球蛋白链的小鼠/人嵌合血红蛋白。对这些蛋白质的氧结合特性的详细分析确定了特定β型球蛋白链在控制氧结合特性中所起的主导作用。进一步的分析将这些效应的起源归因于这些蛋白质T状态特性的改变。人的zeta /小鼠β嵌合蛋白已经结晶,并且其结构已经通过X射线衍射确定为分辨率为2.1 A,R(R(游离))值为21.6%(24.9%)。对结构的仔细检查表明,亚基界面包含接触,尽管与亲本人类或亲本小鼠蛋白质中存在的接触不同,但仍保留了在其他R状态血红蛋白中看到的总体稳定相互作用。

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