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首页> 外文期刊>Journal of Applied Crystallography >Automatic inference of protein quaternary structure from crystals
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Automatic inference of protein quaternary structure from crystals

机译:从晶体自动推断蛋白质四级结构

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The arrangement of the subunits in an oligomeric protein often cannot be inferred without ambiguity from crystallographic studies. The annotation of the functional assembly of protein structures in the Protein Data Bank (PDB) is incomplete and frequently inconsistent. Instructions for the reconstruction, by symmetry, of the functional assembly from the deposited coordinates are often absent. An automatic procedure is proposed for the inference of assembly structures that are likely to be physiologically relevant. The method scores crystal contacts by their contact size and chemical complementarity. The subunit assembly is then inferred from these scored contacts by a clustering procedure involving a single adjustable parameter. When predicting the oligomeric state for a non-redundant set of 55 monomeric and 163 oligomeric proteins from dimers up to hexamers, a classification error rate of 16% was observed. [References: 28]
机译:没有晶体学研究的不确定性,通常无法推断出寡聚蛋白中亚基的排列。蛋白质数据库(PDB)中蛋白质结构功能组装的注释不完整,并且经常不一致。通常不存在用于从所存储的坐标对称地重建功能组件的指令。提出了一种自动程序来推断可能与生理相关的装配结构。该方法通过接触大小和化学互补性来对晶体接触进行评分。然后,通过涉及单个可调整参数的聚类过程,从这些刻痕接触中推断出亚基组件。从二聚体到六聚体预测55个单体和163个低聚蛋白的非冗余集的低聚状态时,观察到分类错误率为16%。 [参考:28]

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