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通过与肌钙蛋白-C的比较分子建模预测钙调蛋白上的两个三氟拉嗪结合位点。

Two trifluoperazine-binding sites on calmodulin predicted from comparative molecular modeling with troponin-C.

作者信息

Strynadka N C, James M N

机构信息

Medical Research Council of Canada Group in Protein Structure and Function, Department of Biochemistry, University of Alberta, Edmonton.

出版信息

Proteins. 1988;3(1):1-17. doi: 10.1002/prot.340030102.

Abstract

Among the known regulatory proteins that are conformationally sensitive to the binding of calcium ions, calmodulin and troponin-C have the greatest primary sequence homology. This observation has led to the conclusion that the most accurate predicted molecular model of calmodulin would be based on the X-ray crystallographic coordinates of the highly refined structure of turkey skeletal troponin-C. This paper describes the structure of calmodulin built from such a premise. The resulting molecular model was subjected to conjugate gradient energy minimization to remove unacceptable intramolecular non-bonded contacts. In the analysis of the resulting structure, many features of calmodulin, including the detailed conformation of the Ca2+-binding loops, the amino- and carboxy-terminal hydrophobic patches of the Ca2+-bound form, and the several clusters of acidic residues can be reconciled with much of the previously published solution data. Calmodulin is missing the N-terminal helix characteristic of troponin-C. The deletion of three residues from the central helical linker (denoted D/E in troponin-C) shortens the molecule and changes the orientation of the two domains of calmodulin by 60 degrees relative to those in troponin-C. The molecular model has been used to derive two possible binding sites for the antipsychotic drug trifluoperazine, a potent competitive inhibitor of calmodulin activity.

摘要

在已知的对钙离子结合具有构象敏感性的调节蛋白中,钙调蛋白和肌钙蛋白C具有最大的一级序列同源性。这一观察结果得出结论,钙调蛋白最准确的预测分子模型将基于火鸡骨骼肌肌钙蛋白C高度精细结构的X射线晶体学坐标。本文描述了基于这一前提构建的钙调蛋白结构。对所得分子模型进行共轭梯度能量最小化,以消除不可接受的分子内非键接触。在对所得结构的分析中,钙调蛋白的许多特征,包括Ca2+结合环的详细构象、Ca2+结合形式的氨基和羧基末端疏水区域以及几个酸性残基簇,都可以与许多先前发表的溶液数据相吻合。钙调蛋白缺少肌钙蛋白C特有的N端螺旋。中央螺旋连接子(在肌钙蛋白C中表示为D/E)缺失三个残基会缩短分子,并使钙调蛋白的两个结构域相对于肌钙蛋白C中的结构域旋转60度。该分子模型已被用于推导抗精神病药物三氟拉嗪的两个可能结合位点,三氟拉嗪是钙调蛋白活性的有效竞争性抑制剂。

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