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分辨率为2.0埃的大鼠小清蛋白(一种哺乳动物α系小清蛋白)的精细晶体结构。

Refined crystal structure of rat parvalbumin, a mammalian alpha-lineage parvalbumin, at 2.0 A resolution.

作者信息

McPhalen C A, Sielecki A R, Santarsiero B D, James M N

机构信息

Department of Biochemistry, University of Alberta, Edmonton, Canada.

出版信息

J Mol Biol. 1994 Jan 14;235(2):718-32. doi: 10.1006/jmbi.1994.1023.

Abstract

We present here the X-ray crystal structure of the rat alpha-parvalbumin from fast twitch muscle. This protein (M(r) 11.8 kDa) crystallizes in space group P2(1)2(1)2(1) with unit cell dimensions of a = 34.3 A, b = 55.0 A, c = 156.1 A and three molecules in the asymmetric unit. The protein structure was solved by the molecular replacement method and has been refined to a crystallographic R-factor [formula: see text] of 0.181 for all reflections with I/sigma(I) > or = 2 (I = intensity) between 8.0 and 2.0 A resolution. The molecules located most easily in the molecular replacement rotation function had lower overall thermal motion parameters and higher numbers of intermolecular crystal packing contacts. The overall fold of the polypeptide chain for the rat alpha-parvalbumin is similar to other known parvalbumin structures (root-mean-square deviations in alpha-carbon atom positions range from 0.60 to 0.87 A). There are two Ca(2+)-binding sites in parvalbumins, and there is some evidence for a third ion-binding site, adjacent to the CD site, in the rat species. The level of structural variability among the best-ordered regions of the three independent rat alpha-parvalbumin molecules in the crystallographic asymmetric unit is two to three times higher than the mean coordinate error (0.10 A), indicating flexibility in the molecule. Sequence differences between alpha and beta-lineage parvalbumins result in repacking of the hydrophobic core and some shifts in the protein backbone. The shifts are localized, however, and entire helices do not shift as rigid units.

摘要

我们在此展示来自快肌的大鼠α-小清蛋白的X射线晶体结构。这种蛋白质(相对分子质量11.8 kDa)以空间群P2(1)2(1)2(1)结晶,晶胞尺寸为a = 34.3 Å,b = 55.0 Å,c = 156.1 Å,不对称单元中有三个分子。该蛋白质结构通过分子置换法解析,对于8.0至2.0 Å分辨率下I/σ(I)≥2(I =强度)的所有反射,已精修至晶体学R因子[公式:见正文]为0.181。在分子置换旋转函数中最容易定位的分子具有较低的整体热运动参数和较多的分子间晶体堆积接触。大鼠α-小清蛋白多肽链的整体折叠与其他已知的小清蛋白结构相似(α碳原子位置的均方根偏差范围为0.60至0.87 Å)。小清蛋白中有两个Ca(2+)结合位点,在大鼠物种中,有一些证据表明在与CD位点相邻处存在第三个离子结合位点。晶体学不对称单元中三个独立的大鼠α-小清蛋白分子最佳有序区域之间的结构变异水平比平均坐标误差(0.10 Å)高两到三倍,表明分子具有灵活性。α和β系小清蛋白之间的序列差异导致疏水核心的重新排列以及蛋白质主链的一些移位。然而,这些移位是局部的,整个螺旋不会作为刚性单元移位。

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