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From face to interface recognition: a differential geometric approach to distinguish DNA from RNA binding surfaces

机译:从面部到界面的识别:区分DNA与RNA结合表面的差异几何方法

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摘要

Protein nucleic acid interactions play a critical role in all steps of the gene expression pathway. Nucleic acid (NA) binding proteins interact with their partners, DNA or RNA, via distinct regions on their surface that are characterized by an ensemble of chemical, physical and geometrical properties. In this study, we introduce a novel methodology based on differential geometry, commonly used in face recognition, to characterize and predict NA binding surfaces on proteins. Applying the method on experimentally solved three-dimensional structures of proteins we successfully classify double-stranded DNA (dsDNA) from single-stranded RNA (ssRNA) binding proteins, with 83% accuracy. We show that the method is insensitive to conformational changes that occur upon binding and can be applicable for de novo protein-function prediction. Remarkably, when concentrating on the zinc finger motif, we distinguish successfully between RNA and DNA binding interfaces possessing the same binding motif even within the same protein, as demonstrated for the RNA polymerase transcription-factor, TFIIIA. In conclusion, we present a novel methodology to characterize protein surfaces, which can accurately tell apart dsDNA from an ssRNA binding interfaces. The strength of our method in recognizing fine-tuned differences on NA binding interfaces make it applicable for many other molecular recognition problems, with potential implications for drug design.
机译:蛋白质核酸相互作用在基因表达途径的所有步骤中都起着至关重要的作用。核酸(NA)结合蛋白通过其表面上不同的区域与其伴侣,DNA或RNA相互作用,这些区域的特征在于化学,物理和几何特性的整体。在这项研究中,我们介绍了一种基于微分几何的新颖方法,通常用于面部识别,以表征和预测蛋白质上的NA结合表面。将方法应用于通过实验解决的蛋白质三维结构上,我们成功地从单链RNA(ssRNA)结合蛋白中对双链DNA(dsDNA)进行了分类,准确度达83%。我们表明该方法对结合时发生的构象变化不敏感,可用于从头蛋白质功能预测。值得注意的是,当集中于锌指基序时,我们成功地区分了RNA和DNA结合界面,即使在同一蛋白质内也具有相同的结合基序,如RNA聚合酶转录因子TFIIIA所示。总之,我们提出了一种表征蛋白质表面的新颖方法,该方法可以准确区分dsDNA与ssRNA结合界面。我们的方法在识别NA结合界面上的微妙差异方面的优势使其可用于许多其他分子识别问题,这对药物设计具有潜在的影响。

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