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PreDNA: accurate prediction of DNA-binding sites in proteins by integrating sequence and geometric structure information

机译:PreDNA:通过整合序列和几何结构信息来准确预测蛋白质中的DNA结合位点

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Motivation: Protein-DNA interactions often take part in various crucial processes, which are essential for cellular function. The identification of DNA-binding sites in proteins is important for understanding the molecular mechanisms of protein-DNA interaction. Thus, we have developed an improved method to predict DNA-binding sites by integrating structural alignment algorithm and support vector machine-based methods. Results: Evaluated on a new non-redundant protein set with 224 chains, the method has 80.7% sensitivity and 82.9% specificity in the 5-fold cross-validation test. In addition, it predicts DNA-binding sites with 85.1% sensitivity and 85.3% specificity when tested on a dataset with 62 protein-DNA complexes. Compared with a recently published method, BindN+, our method predicts DNA-binding sites with a 7% better area under the receiver operating characteristic curve value when tested on the same dataset. Many important problems in cell biology require the dense non-linear interactions between functional modules be considered. Thus, our prediction method will be useful in detecting such complex interactions. Availability: The PreDNA webserver is freely available at: http://202.207.14.178/predna/index.aspx Contact: qzli@imu.edu.cn Supplementary information: Supplementary data are available at Bioinformatics online
机译:动机:蛋白质-DNA相互作用通常参与各种关键过程,这对于细胞功能至关重要。蛋白质中DNA结合位点的鉴定对于理解蛋白质与DNA相互作用的分子机制很重要。因此,我们开发了一种改进的方法,通过整合结构比对算法和基于支持向量机的方法来预测DNA结合位点。结果:对新的具有224条链的非冗余蛋白进行了评估,该方法在5倍交叉验证测试中具有80.7%的灵敏度和82.9%的特异性。此外,当在具有62种蛋白质-DNA复合物的数据集上进行测试时,它预测DNA结合位点的敏感性为85.1%,特异性为85.3%。与最近发布的方法BindN +相比,当在同一数据集上进行测试时,我们的方法可以预测在接收器工作特征曲线值下方具有7%更好面积的DNA结合位点。细胞生物学中的许多重要问题都需要考虑功能模块之间的密集非线性相互作用。因此,我们的预测方法将有助于检测这种复杂的相互作用。可用性:PreDNA Web服务器可免费获得:http://202.207.14.178/predna/index.aspx联系人:qzli@imu.edu.cn补充信息:补充数据可在线在线生物信息学获得

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