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Decoy Discrimination Using Contact Potentials Based on Delaunay Tessellation of Hydrated Proteins

机译:使用基于水合蛋白质Delaunay细分的接触电位进行诱饵识别

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Three strategies are presented for developing a knowledge-based statistical contact potential from computationally hydrated proteins that may be useful in studies of protein folding and stability. The potentials employ a definition of nearest neighbor contact based on Delaunay tessellation that identifies quadruplets of neighboring residues. The potentials are derived from a large set of proteins with explicit waters of hydration to improve the representation of the protein environment. The decoy discrimination ability of the three potentials as well as an unhydrated potential are evaluated and compared using four sets of publicly available protein decoy structures. The results suggest that the potentials can be used to infer the compatibility of a sequence of residues with a specific protein structure.
机译:提出了三种策略,用于从计算水合蛋白质开发基于知识的统计接触电位,这可能对蛋白质折叠和稳定性的研究很有用。电位采用基于Delaunay细分的最近邻接触的定义,该细分可识别邻域残基的四联体。电位源自大量具有明显水合水的蛋白质,以改善蛋白质环境的表征。使用四组公开可用的蛋白质诱饵结构评估并比较了三个电位和非水合电位的诱饵辨别能力。结果表明该电势可用于推断具有特定蛋白质结构的残基序列的相容性。

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    《》|2007年|159-167|共9页
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    Reck; Gregory M.; Vaisman; Iosif I.;

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