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通过能量计算识别远缘相关蛋白质。

Recognition of distantly related proteins through energy calculations.

作者信息

Abagyan R, Frishman D, Argos P

机构信息

European Molecular Biology Laboratory, Heidelberg, Germany.

出版信息

Proteins. 1994 Jun;19(2):132-40. doi: 10.1002/prot.340190206.

Abstract

A new method to detect remote relationships between protein sequences and known three-dimensional structures based on direct energy calculations and without reliance on statistics has been developed. The likelihood of a residue to occupy a given position on the structural template was represented by an estimate of the stabilization free energy made after explicit prediction of the substituted side chain conformation. The profile matrix derived from these energy values and modified by increasing the residue self-exchange values successfully predicted compatibility of heat-shock protein and globin sequences with the three-dimensional structures of actin and phycocyanin, respectively, from a full protein sequence databank search. The high sensitivity of the method makes it a unique tool for predicting the three-dimensional fold for the rapidly growing number of protein sequences.

摘要

已开发出一种基于直接能量计算且不依赖统计数据来检测蛋白质序列与已知三维结构之间远程关系的新方法。残基占据结构模板上给定位置的可能性由在明确预测取代侧链构象后得到的稳定自由能估计值表示。从这些能量值导出并通过增加残基自交换值进行修改的轮廓矩阵,在对完整蛋白质序列数据库进行搜索时,成功分别预测了热休克蛋白和球蛋白序列与肌动蛋白和藻蓝蛋白三维结构的兼容性。该方法的高灵敏度使其成为预测快速增长的蛋白质序列三维折叠的独特工具。

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