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嗜热栖热放线菌磷酸烯醇丙酮酸合酶的四级结构:基于分子模型的冷冻电子显微镜图像角度重构

Quaternary organization of the Staphylothermus marinus phosphoenolpyruvate synthase: angular reconstitution from cryoelectron micrographs with molecular modeling.

作者信息

Li W, Ottensmeyer F P, Harauz G

机构信息

Department of Molecular Biology and Genetics, University of Guelph, Guelph, Ontario, Canada N1G 2W1.

出版信息

J Struct Biol. 2000 Dec;132(3):226-40. doi: 10.1006/jsbi.2000.4322.

Abstract

Digital electron images of frozen-hydrated preparations of the 2.25-MDa Staphylothermus marinus phosphoenolpyruvate synthase (EC 2.7.9.2) have been analyzed by single-particle classification and averaging and iterative quaternion-based angular reconstitution. Contrast transfer function correction of micrographs obtained at different defocus values was used to improve the informational quality of the projection averages. Three-dimensional reconstructions were obtained to roughly 3-nm spatial resolution, in which the 24 identical subunits were arranged to form an octahedral complex, although the amino-terminal nucleotide-binding domain was not resolved. An atomic model of the subunit was generated by homology modeling using as the reference the known X-ray crystallographic structure of the related enzyme pyruvate orthophosphate dikinase (EC 2.7.9.1) from Clostridium symbiosum (Protein Data Bank entry 1DIK). The S. marinus protein could be arranged into an assembly of 12 homodimers to match the three-dimensional reconstruction in terms of shape and size of the homodimers, as well as overall shape and size of the complex. The quaternary model indicated that active sites of three monomers were localized around cavities (or putative channels) centered at the threefold axes of rotational symmetry and that carboxyl-terminal alpha-helical segments of four monomers were localized at the fourfold axes of rotational symmetry where they could facilitate interdimer interaction. The quaternary arrangement also indicated numerous potential hydrophobic and electrostatic interactions at the interdimer interfaces that could contribute further to structural stability.

摘要

通过单颗粒分类、平均以及基于四元数的迭代角度重构,对2.25-MDa的海栖热袍菌磷酸烯醇丙酮酸合酶(EC 2.7.9.2)的冷冻水合制剂的数字电子图像进行了分析。对在不同散焦值下获得的显微照片进行对比度传递函数校正,以提高投影平均值的信息质量。获得了约3纳米空间分辨率的三维重建结果,其中24个相同的亚基排列形成八面体复合物,尽管氨基末端核苷酸结合结构域未解析。使用共生梭菌相关酶丙酮酸正磷酸二激酶(EC 2.7.9.1)的已知X射线晶体结构(蛋白质数据库条目1DIK)作为参考,通过同源建模生成了亚基的原子模型。海栖热袍菌蛋白可以排列成12个同型二聚体的组装体,以在同型二聚体的形状和大小以及复合物的整体形状和大小方面与三维重建相匹配。四级模型表明,三个单体的活性位点位于以三重旋转对称轴为中心的腔(或假定通道)周围,并且四个单体的羧基末端α螺旋段位于四重旋转对称轴处,在那里它们可以促进二聚体间的相互作用。四级排列还表明在二聚体间界面处存在大量潜在的疏水和静电相互作用,这可能进一步有助于结构稳定性。

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