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β99天冬氨酸-酪氨酸突变稳定了Y——人血红蛋白的一种新的复合四级结构状态。

The mutation beta 99 Asp-Tyr stabilizes Y--a new, composite quaternary state of human hemoglobin.

作者信息

Smith F R, Lattman E E, Carter C W

机构信息

Department of Biochemistry and Biophysics, University of North Carolina, Chapel Hill 27599-7260.

出版信息

Proteins. 1991;10(2):81-91. doi: 10.1002/prot.340100202.

Abstract

Carbonmonoxy hemoglobin Ypsilanti (beta 99 Asp-Tyr) exhibits a quaternary form distinctly different from any structures previously observed for human hemoglobins. The relative orientation of alpha beta dimers in the new quaternary form lies well outside the range of values observed for normal unliganded and liganded tetramers (Baldwin, J., Chothia, C., J. Mol. Biol. 129:175-220, 1979). Despite this large quaternary structural difference between carbonmonoxy hemoglobin Ypsilanti and the two canonical structures, the new quaternary structure's hydrogen bonding interactions in the "switch" region, and packing interactions in the "flexible joint" region, show noncovalent interactions characteristic of the alpha 1 beta 2 contacts of both unliganded and liganded normal hemoglobins. In contrast to both canonical structures, the beta 97 histidine residue in carbonmonoxy hemoglobin Ypsilanti is disengaged from quaternary packing interactions that are generally believed to enforce two-state behavior in ligand binding. These features of the new quaternary structure, denoted Y, may therefore be representative of quaternary states that occur transiently along pathways between the normal unliganded, T, and liganded, R, hemoglobin structures.

摘要

伊普西兰蒂碳氧血红蛋白(β99天冬氨酸 - 酪氨酸)呈现出一种与先前观察到的人类血红蛋白的任何结构都明显不同的四级结构形式。在这种新的四级结构形式中,αβ二聚体的相对取向远远超出了正常未结合配体和结合配体的四聚体所观察到的值范围(鲍德温,J.,乔西亚,C.,《分子生物学杂志》129:175 - 220,1979)。尽管伊普西兰蒂碳氧血红蛋白与两种典型结构之间存在如此大的四级结构差异,但新的四级结构在“开关”区域的氢键相互作用以及在“柔性接头”区域的堆积相互作用,显示出未结合配体和结合配体的正常血红蛋白的α1β2接触所特有的非共价相互作用。与两种典型结构相反,伊普西兰蒂碳氧血红蛋白中的β97组氨酸残基脱离了通常被认为在配体结合中强制二态行为的四级堆积相互作用。因此,这种新的四级结构(称为Y)的这些特征可能代表了在正常未结合配体的T型和结合配体的R型血红蛋白结构之间的途径中短暂出现的四级状态。

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