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首页> 外文期刊>Journal of Molecular Biology >Prediction of catalytic residues in enzymes based on known tertiary structure, stability profile, and sequence conservation.
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Prediction of catalytic residues in enzymes based on known tertiary structure, stability profile, and sequence conservation.

机译:根据已知的三级结构,稳定性和序列保守性预测酶中的催化残基。

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摘要

The catalytic or functionally important residues of a protein are known to exist in evolutionarily constrained regions. However, the patterns of residue conservation alone are sometimes not very informative, depending on the homologous sequences available for a given query protein. Here, we present an integrated method to locate the catalytic residues in an enzyme from its sequence and structure. Mutations of functional residues usually decrease the activity, but concurrently often increase stability. Also, catalytic residues tend to occupy partially buried sites in holes or clefts on the molecular surface. After confirming these general tendencies by carrying out statistical analyses on 49 representative enzymes, these data together with amino acid conservation were evaluated. This novel method exhibited better sensitivity in the prediction accuracy than traditional methods that consider only the residue conservation. We applied it to some so-called "hypothetical" proteins, with known structures but undefined functions. The relationships among the catalytic, conserved, and destabilizing residues in enzymatic proteins are discussed.
机译:已知蛋白质的催化或功能上重要的残基存在于进化受限区域中。但是,取决于给定查询蛋白可用的同源序列,有时仅保留残基的模式就不能提供足够的信息。在这里,我们提出了一种从其序列和结构上定位酶中催化残基的综合方法。功能残基的突变通常会降低活性,但同时往往会增加稳定性。而且,催化残基倾向于占据分子表面上的孔或裂口中的部分掩埋位。通过对49种代表性酶进行统计分析确认了这些总体趋势后,对这些数据以及氨基酸保守性进行了评估。与仅考虑残基保守性的传统方法相比,该新方法在预测精度方面显示出更高的灵敏度。我们将其应用于某些所谓的“假设的”蛋白质,这些蛋白质具有已知的结构但功能尚未定义。讨论了酶促蛋白中催化的,保守的和不稳定的残基之间的关系。

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