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Genome-Wide DNA Methylation Analysis and Epigenetic Variations Associated with Congenital Aortic Valve Stenosis (AVS)

机译:全基因组DNA甲基化分析和与先天性主动脉瓣狭窄(AVS)相关的表观遗传变异

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摘要

Congenital heart defect (CHD) is the most common cause of death from congenital anomaly. Among several candidate epigenetic mechanisms, DNA methylation may play an important role in the etiology of CHDs. We conducted a genome-wide DNA methylation analysis using an Illumina Infinium 450k human methylation assay in a cohort of 24 newborns who had aortic valve stenosis (AVS), with gestational-age matched controls. The study identified significantly-altered CpG methylation at 59 sites in 52 genes in AVS subjects as compared to controls (either hypermethylated or demethylated). Gene Ontology analysis identified biological processes and functions for these genes including positive regulation of receptor-mediated endocytosis. Consistent with prior clinical data, the molecular function categories as determined using DAVID identified low-density lipoprotein receptor binding, lipoprotein receptor binding and identical protein binding to be over-represented in the AVS group. A significant epigenetic change in the APOA5 and PCSK9 genes known to be involved in AVS was also observed. A large number CpG methylation sites individually demonstrated good to excellent diagnostic accuracy for the prediction of AVS status, thus raising possibility of molecular screening markers for this disorder. Using epigenetic analysis we were able to identify genes significantly involved in the pathogenesis of AVS.
机译:先天性心脏缺陷(CHD)是因先天性异常死亡的最常见原因。在几种候选表观遗传机制中,DNA甲基化可能在冠心病的病因中起重要作用。我们使用Illumina Infinium 450k人类甲基化测定法,对24名患有主动脉瓣狭窄(AVS)的新生儿以及妊娠年龄相匹配的对照组进行了全基因组DNA甲基化分析。这项研究发现,与对照组(超甲基化或脱甲基化)相比,AVS受试者52个基因中59个位点的CpG甲基化显着改变。基因本体分析确定了这些基因的生物学过程和功能,包括受体介导的内吞作用的正调控。与先前的临床数据一致,使用DAVID确定的分子功能类别确定了低密度脂蛋白受体结合,脂蛋白受体结合和相同蛋白质结合在AVS组中被过度代表。还观察到已知参与AVS的APOA5和PCSK9基因发生了显着的表观遗传变化。大量CpG甲基化位点单独显示出良好的诊断准确性,可预测AVS状态,因此增加了对该疾病进行分子筛查标记的可能性。使用表观遗传学分析,我们能够鉴定出与AVS发病机理显着相关的基因。

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