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四角蛤蜊四聚体血红蛋白的2.0埃晶体结构:变构四聚体内的协同二聚体

The 2.0 A crystal structure of Scapharca tetrameric hemoglobin: cooperative dimers within an allosteric tetramer.

作者信息

Royer W E, Heard K S, Harrington D J, Chiancone E

机构信息

Department of Biochemistry and Molecular Biology, University of Massachusetts Medical Center, Worcester 01605, USA.

出版信息

J Mol Biol. 1995 Oct 13;253(1):168-86. doi: 10.1006/jmbi.1995.0543.

Abstract

The crystal structure of the allosteric tetrameric hemoglobin from Scapharca inaequivalvis (HbII) has been determined in the carbonmonoxy liganded state using a combination of anomalous scattering and molecular replacement. The molecular model has been refined at 2.0 A resolution to a conventional R-factor of 0.173 and a free R-factor of 0.244. The tetramer is formed from two identical heterodimers. Each heterodimer is assembled with intersubunit contacts involving the E and F helices and heme groups in a manner that is very similar to that of the cooperative Scapharca homodimeric hemoglobin. In addition, the ordered water structure observed in these dimeric interfaces is quite similar. These structural similarities strongly suggest that the dimers within the Scapharca tetramer are cooperative. Subunits assemble into a tetramer in a distinctly non-tetrahedral arrangement, with the pseudo 2-fold axes of the heterodimer oriented at an angle of 74.5 degrees relative to the molecular 2-fold. This arrangement requires that two subunit types have distinct locations and contacts, despite the very similar tertiary structures. HbII polymerizes to higher-order assemblages in a ligand, proton and anion dependent fashion. The lattice contacts in the HbII-CO crystal suggest possible modes for this association.

摘要

利用反常散射和分子置换相结合的方法,已确定不等边紫蛤(HbII)变构四聚体血红蛋白在一氧化碳配体状态下的晶体结构。分子模型已在2.0埃分辨率下精修,传统R因子为0.173,自由R因子为0.244。四聚体由两个相同的异二聚体形成。每个异二聚体通过涉及E和F螺旋以及血红素基团的亚基间接触组装而成,其方式与协同的紫蛤同二聚体血红蛋白非常相似。此外,在这些二聚体界面中观察到的有序水结构也非常相似。这些结构相似性强烈表明紫蛤四聚体内的二聚体具有协同性。亚基以明显非四面体的排列方式组装成四聚体,异二聚体的伪二重轴相对于分子二重轴以74.5度角取向。这种排列要求两种亚基类型具有不同的位置和接触,尽管它们的三级结构非常相似。HbII以依赖配体、质子和阴离子的方式聚合成更高阶的聚集体。HbII-CO晶体中的晶格接触表明了这种缔合的可能模式。

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