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钙调蛋白结构在2.2埃分辨率下得到优化。

Structure of calmodulin refined at 2.2 A resolution.

作者信息

Babu Y S, Bugg C E, Cook W J

机构信息

Department of Pathology, University of Alabama, Birmingham 35294.

出版信息

J Mol Biol. 1988 Nov 5;204(1):191-204. doi: 10.1016/0022-2836(88)90608-0.

Abstract

The crystal structure of mammalian calmodulin has been refined at 2.2 A (1 A = 0.1 nm) resolution using a restrained least-squares method. The final crystallographic R-factor, based on 6685 reflections in the range 2.2 A less than or equal to d less than or equal to 5.0 A with intensities exceeding 2.5 sigma, is 0.175. Bond lengths and bond angles in the molecule have root-mean-square deviations from ideal values of 0.016 A and 1.7 degrees, respectively. The refined model includes residues 5 to 147, four Ca2+ and 69 water molecules per molecule of calmodulin. The electron density for residues 1 to 4 and 148 is poorly defined, and they are not included in the model. The molecule is shaped somewhat like a dumbbell, with an overall length of 65 A; the two lobes are connected by a seven-turn alpha-helix. Prominent secondary structural features include seven alpha-helices, four Ca2+-binding loops, and two short, double-stranded antiparallel beta-sheets between pairs of adjacent Ca2+-binding loops. The four Ca2+-binding domains in calmodulin have a typical EF hand conformation (helix-loop-helix) and are similar to those described in other Ca2+-binding proteins. The X-ray structure determination of calmodulin shows a large hydrophobic cleft in each half of the molecule. These hydrophobic regions probably represent the sites of interaction with many of the pharmacological agents known to bind to calmodulin.

摘要

已使用约束最小二乘法将哺乳动物钙调蛋白的晶体结构精修至2.2埃(1埃 = 0.1纳米)分辨率。基于2.2埃≤d≤5.0埃范围内6685个强度超过2.5σ的反射,最终晶体学R因子为0.175。分子中的键长和键角与理想值的均方根偏差分别为0.016埃和1.7度。精修模型包括钙调蛋白每个分子中的5至147位残基、4个Ca2+和69个水分子。1至4位和148位残基的电子密度定义不明确,未包含在模型中。该分子形状有点像哑铃,总长65埃;两个叶通过一个七圈α螺旋相连。突出的二级结构特征包括七个α螺旋、四个Ca2+结合环以及相邻Ca2+结合环对之间的两个短的双链反平行β折叠。钙调蛋白中的四个Ca2+结合结构域具有典型的EF手型构象(螺旋-环-螺旋),与其他Ca2+结合蛋白中描述的结构域相似。钙调蛋白的X射线结构测定显示分子的每一半都有一个大的疏水裂缝。这些疏水区域可能代表了与许多已知与钙调蛋白结合的药理试剂相互作用的位点。

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