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A Novel Ensemble Decision Tree Approach for Mining Genes Coding Ion Channels for Cardiopathy Subtype

机译:一种新的集成决策树方法,用于挖掘基因的组成基因亚型亚型

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Ion channels are critical for normal physiological function of humans and their functional abnormality may cause many disorders named channelopathy. Meanwhile, they are one of the few proteins that can be efficiently regulated by small molecule drugs, so they are ideal candidates for drug targets. Upon these viewpoints, it is known that research on ion channels will bring great scientific and practical value. Here, we applied a novel ensemble decision tree approach based on mining genes encoding the ion channels. Using this ensemble method, we analyzed an oligo array data set concerning the human cardiopathy which investigated by Medical College of Harvard University. By analyzing 57 samples and 1172 genes related to ion channels and other transmembrane proteins, we demonstrated that the ensemble approach can efficiently mine out disease related CACNA genes.
机译:离子通道对于人类的正常生理功能至关重要,其功能异常可能导致许多名为Chancopathy的疾病。同时,它们是可通过小分子药物有效调节的少数蛋白质之一,因此它们是药物靶标的理想候选者。在这些观点上,已知对离子通道的研究将带来巨大的科学和实用价值。在这里,我们基于编码离子通道的采矿基因应用了一种新的集合决策树方法。使用该集合方法,我们分析了关于由哈佛大学医学院调查的人类心肌病的寡核苷酸阵列数据集。通过分析与离子通道和其他跨膜蛋白相关的57个样本和1172个基因,我们证明了集合方法可以有效地挖掘疾病相关的CaCNA基因。

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