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Structural analysis of conserved base pairs in protein-DNA complexes

机译:蛋白质-DNA复合物中保守碱基对的结构分析

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Understanding of protein-DNA interactions is crucial for prediction of DNA-binding specificity of transcription factors and design of novel DNA-binding proteins. In this paper we develop a novel approach to analysis of protein-DNA interactions. We bring together two sources of information: (i) structures of protein-DNA complexes (PDB/NDB database) and (ii) experimentally obtained sites recognized by DNA-binding proteins. Sites are used to compute conservation (information content) of each base pair, which indicates relative importance of the base pair in specific recognition. The main result of this study is that conservation of base pairs in a site exhibits significant correlation with the number of contacts the base pairs have with the protein. In particular, base pairs that have more contacts with the protein are more conserved in evolution. As natural as it is, this result has never been reported before. We also observe that for most of the studied proteins, hydrogen bonds and hydrophobic interactions alone cannot explain the pattern of evolutionary conservation in the binding site suggesting cumulative contribution of different types of interactions to specific recognition. Implications for prediction of the DNA-binding specificity are discussed.
机译:蛋白质-DNA相互作用的理解对于预测转录因子的DNA结合特异性和设计新颖的DNA结合蛋白至关重要。在本文中,我们开发了一种分析蛋白质-DNA相互作用的新颖方法。我们汇集了两种信息来源:(i)蛋白质-DNA复合物的结构(PDB / NDB数据库)和(ii)实验获得的被DNA结合蛋白识别的位点。位点用于计算每个碱基对的保守性(信息含量),这表明碱基对在特定识别中的相对重要性。这项研究的主要结果是,一个位点中碱基对的保守性与碱基对与蛋白质的接触次数呈显着相关性。特别地,与蛋白质更多接触的碱​​基对在进化中更保守。尽管很自然,但从未有过此结果的报道。我们还观察到,对于大多数研究的蛋白质而言,氢键和疏水相互作用本身不能解释结合位点上进化保守的模式,表明不同类型相互作用的累积贡献对特定识别。讨论了预测DNA结合特异性的含义。

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