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首页> 外文期刊>International Journal of Biological Macromolecules: Structure, Function and Interactions >Sequence and structural analysis of binding site residues in protein–protein complexes
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Sequence and structural analysis of binding site residues in protein–protein complexes

机译:蛋白质-蛋白质复合物中结合位点残基的序列和结构分析

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摘要

The binding sites in protein–protein complexes have been identified with different methods including atomic contacts, reduction in solvent accessibility and interaction energy between the interacting partners. In our earlier work, we have developed an energy-based criteria for identifying the binding sites in protein–protein complexes, which showed that the interacting residues are different from that obtained with distance-based methods. In this work, we analyzed the binding site residues based on sequence and structural properties, such as, neighboring residues, secondary structure, solvent accessibility, conservation of residues, medium and long-range contacts and surrounding hydrophobicity. Our results showed that the neighboring residues of binding sites in proteins and ligands are different from each other although the interacting pairs of residues have a common behavior. The analysis on surrounding hydrophobicity reveals that the binding residues are less hydrophobic than non-binding sites, which suggests that the hydrophobic core are important for folding and stability whereas the surface seeking residues play a critical role in binding. This tendency has been verified with the number of contacts in binding sites. In addition, the binding site residues are highly conserved compared with non-binding residues. We suggest that the incorporation of sequence and structure-based features may improve the prediction accuracy of binding sites in protein–protein complexes.
机译:蛋白质-蛋白质复合物中的结合位点已通过不同方法进行了鉴定,包括原子接触,减少溶剂可及性以及相互作用伙伴之间的相互作用能。在我们的早期工作中,我们已经开发出了一种基于能量的标准来识别蛋白质-蛋白质复合物中的结合位点,该标准表明相互作用的残基与基于距离的方法所获得的残基不同。在这项工作中,我们根据序列和结构特性,例如相邻残基,二级结构,溶剂可及性,残基保守性,中长期接触和周围疏水性,分析了结合位点残基。我们的结果表明,尽管相互作用的残基对具有共同的行为,但蛋白质和配体中结合位点的相邻残基彼此不同。对周围疏水性的分析表明,结合残基的疏水性低于非结合位点,这表明疏水核对于折叠和稳定性很重要,而表面寻找残基在结合中起关键作用。这种趋势已被结合位点中的接触数量所证实。另外,与非结合残基相比,结合位点残基是高度保守的。我们建议,结合序列和基于结构的特征可以提高蛋白质-蛋白质复合物中结合位点的预测准确性。

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