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牛晶状体γ-晶体蛋白的物理化学特性——流体动力学和生化特性

Physicochemical characterization of gamma-crystallins from bovine lens--hydrodynamic and biochemical properties.

作者信息

Chiou S H, Azari P, Himmel M E

机构信息

Institute of Biological Chemistry, Academia Sinica, Taipei, Taiwan, R.O.C.

出版信息

J Protein Chem. 1988 Feb;7(1):67-80. doi: 10.1007/BF01025415.

Abstract

A detailed hydrodynamic study has been made on the gamma-crystallin of the bovine lens. Sedimentation study indicates that gamma-crystallin shows a nearly gaussian peak throughout the course of sedimentation at high speed, using a synthetic boundary cell. The diffusion and sedimentation coefficients are 10.3 x 10(-7) cm2/sec and 2.51 S, respectively. The weight-average molecular weight of the unfractionated gamma-crystallin calculated from sedimentation equilibrium is 21,800. The four major subfractions of gamma-crystallin show similar hydrodynamic properties with an intrinsic viscosity of 2.50 ml/g and a Stokes radius of 21 A. The distinct electrophoretic mobilities exhibited by the four subfractions show gel-concentration dependence and similar slopes in the Ferguson plot, indicative of being charge isomers of the same molecular species. Amino acid analysis of these four subfractions corroborated the conclusions that these gamma-crystallin polypeptides are closely related and comprise a multigene family of crystallins. Based on the sedimentation and intrinsic viscosity data, gamma-crystallin can be modeled as a prolate ellipsoid with an axial ratio of approximately 3.0 and a hydration factor of 0.27 g water per gram protein. The circular dichroism data for gamma-crystallins showed a minimum at about 217 nm, characteristic of a beta-sheet conformation. These structural characteristics are in good accord with those derived from X-ray diffraction data for gamma-crystallin II.

摘要

已对牛晶状体的γ-晶状体蛋白进行了详细的流体动力学研究。沉降研究表明,使用合成边界池,γ-晶状体蛋白在高速沉降过程中呈现出近乎高斯峰。扩散系数和沉降系数分别为10.3×10⁻⁷ cm²/秒和2.51 S。根据沉降平衡计算的未分级γ-晶状体蛋白的重均分子量为21,800。γ-晶状体蛋白的四个主要亚组分表现出相似的流体动力学性质,特性粘度为2.50 ml/g,斯托克斯半径为21 Å。这四个亚组分表现出的不同电泳迁移率显示出凝胶浓度依赖性,并且在弗格森图中具有相似的斜率,表明它们是同一分子物种的电荷异构体。对这四个亚组分的氨基酸分析证实了这些γ-晶状体蛋白多肽密切相关且构成晶状体蛋白多基因家族的结论。基于沉降和特性粘度数据,γ-晶状体蛋白可被模拟为长轴比约为3.0且水合因子为每克蛋白质0.27克水的长椭球体。γ-晶状体蛋白的圆二色性数据在约217 nm处显示出最小值,这是β-折叠构象的特征。这些结构特征与从γ-晶状体蛋白II的X射线衍射数据得出的特征高度一致。

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