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Novel approaches to the prediction of CpG islands and their methylation status

机译:CPG岛预测的新方法及其甲基化状态

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A DNA sequence can be described as a string composed of four symbols: A, T, C and G, each representing a chemically distinct nucleotide molecule. Combinations of two nucleotides are called dinucleotides and CpG islands represent regions of a DNA sequence, certain substrings, which are enriched in CpG dinucleotides (C followed by G). CpG islands represent an enigmatic feature of vertebrate genomes. They a critical target for transcriptional control, since methylation of these CpG islands leads to structural changes in the DNA that stops the expression of any associated gene. The factors that provoke or impede methylation are currently unknown. In general, the maintenance of a particular pattern of methylated CpG dinucleotides represents a critical regulatory system during a host of normal developmental processes, but the erroneous methylation of CpG islands and the resulting genesilencing can lead to the development of cancer. We present here a novel unsupervised machine learning method that is capable of distinguishing biologically significant classes of CpG islands, including the separation of methylated and unmethylated CpG islands. This method represents an important novel approach that will aid in the computational prediction of methylation, which is commonly used in the preselection of worthwhile sequences for methylation experiments.
机译:DNA序列可以描述为由四个符号组成的串:A,T,C和G,每个核苷酸分子代表化学不同的核苷酸分子。两个核苷酸的组合称为二核苷酸,CpG岛代表DNA序列的区域,某些亚体,其富集CpG二核苷酸(C之后是G)。 CPG岛代表脊椎动物基因组的神秘特征。它们是转录控制的关键目标,因为这些CPG岛的甲基化导致阻止任何相关基因表达的DNA中的结构变化。挑衅或妨碍甲基化的因素目前未知。通常,维持甲基化CpG二核苷酸的特定模式代表在一系列正常发育过程中的临界调节系统,但CpG岛的错误甲基化和所得的遗传化可以导致癌症的发育。我们在这里展示了一种新颖的无监督机器学习方法,其能够区分生物学显着的CPG岛,包括分离甲基化和未甲基化的CPG岛。该方法代表了一种重要的新方法,其将有助于甲基化的计算预测,这通常用于预选甲基化实验的有价值序列。

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