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Extracting coordinated patterns of DNA methylation and gene expression in ovarian cancer

机译:卵巢癌中DNA甲基化和基因表达的协调模式提取

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摘要

Objective: DNA methylation, a regulator of gene expression, plays an important role in diverse biological processes including developmental process, carcinogenesis and aging. In particular, aberrant DNA methylation has been largely observed in several types of cancers. Currently, it is important to extract disease-specific gene sets associated with the regulation of DNA methylation. Materials and methods: Here we propose a novel approach to find the minimum regulatory units of genes, co-methylated and co-expressed gene pairs (MEGP) that are highly correlated gene pairs between DNA methylation and gene expression showing the co-regulatory relationship. To evaluate whether our method is applicable to extract disease-associated genes, we applied our method to a large-scale dataset from the Cancer Genome Atlas extracting significantly associated MEGP and analyzed their functional correlation. Results: We observed that many MEGP physically interacted with each other and showed high semantic similarity with gene ontology terms. Furthermore, we performed gene set enrichment tests to identify how they are correlated in a complex biological process. Our MEGP were highly enriched in the biological pathway associated with ovarian cancers. Conclusions: Our approach is useful for discovering coordinated epigenetic markers associated with specific diseases.
机译:目的:DNA甲基化,一种基因表达的调节剂,在多种生物学过程(包括发育过程,致癌作用和衰老)中起着重要作用。特别是,在几种类型的癌症中已普遍观察到异常的DNA甲基化。目前,重要的是提取与DNA甲基化调控相关的疾病特异性基因集。材料和方法:在这里,我们提出了一种新颖的方法来寻找基因的最小调控单位,即共甲基化和共表达的基因对(MEGP),它们是DNA甲基化与基因表达之间高度相关的基因对,显示出共同的调控关系。为了评估我们的方法是否适用于提取与疾病相关的基因,我们将我们的方法应用于癌症基因组图谱中的大规模数据集,提取了显着相关的MEGP,并分析了它们的功能相关性。结果:我们观察到许多MEGP彼此物理相互作用,并与基因本体术语表现出高度的语义相似性。此外,我们进行了基因集富集测试,以鉴定它们在复杂的生物过程中如何相关。我们的MEGP在与卵巢癌相关的生物途径中高度丰富。结论:我们的方法对于发现与特定疾病相关的表观遗传标记是有用的。

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