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首页> 外文期刊>American Journal of Epidemiology >Genome-Wide Epigenetic Studies in Human Disease: A Primer on -Omic Technologies
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Genome-Wide Epigenetic Studies in Human Disease: A Primer on -Omic Technologies

机译:人类疾病的全基因组表观遗传研究:-Omic技术入门

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Epigenetic information encoded in covalent modifications of DNA and histone proteins regulates fundamental biological processes through the action of chromatin regulators, transcription factors, and noncoding RNA species. Epigenetic plasticity enables an organism to respond to developmental and environmental signals without genetic changes. However, aberrant epigenetic control plays a key role in pathogenesis of disease. Normal epigenetic states could be disrupted by detrimental mutations and expression alteration of chromatin regulators or by environmental factors. In this primer, we briefly review the epigenetic basis of human disease and discuss how recent discoveries in this field could be translated into clinical diagnosis, prevention, and treatment. We introduce platforms for mapping genome-wide chromatin accessibility, nucleosome occupancy, DNA-binding proteins, and DNA methylation, primarily focusing on the integration of DNA methylation and chromatin immunoprecipitation-sequencing technologies into disease association studies. We highlight practical considerations in applying high-throughput epigenetic assays and formulating analytical strategies. Finally, we summarize current challenges in sample acquisition, experimental procedures, data analysis, and interpretation and make recommendations on further refinement in these areas. Incorporating epigenomic testing into the clinical research arsenal will greatly facilitate our understanding of the epigenetic basis of disease and help identify novel therapeutic targets.
机译:DNA和组蛋白的共价修饰编码的表观遗传信息通过染色质调节剂,转录因子和非编码RNA种类的作用调节基本的生物学过程。表观遗传可塑性使生物体能够响应发育和环境信号而无需遗传改变。然而,异常的表观遗传控制在疾病的发病机理中起关键作用。正常的表观遗传状态可能被有害的突变和染色质调节剂的表达改变或环境因素所破坏。在本入门中,我们简要回顾了人类疾病的表观遗传基础,并讨论了如何将该领域的最新发现转化为临床诊断,预防和治疗。我们介绍了用于绘制全基因组染色质可及性,核小体占有率,DNA结合蛋白和DNA甲基化的平台,主要侧重于将DNA甲基化和染色质免疫沉淀测序技术整合到疾病关联研究中。我们在应用高通量表观遗传分析和制定分析策略时着重介绍了实际的考虑因素。最后,我们总结了样品采集,实验程序,数据分析和解释方面的当前挑战,并对这些领域的进一步完善提出了建议。将表观基因组测试纳入临床研究武库将极大地促进我们对疾病表观遗传基础的理解,并有助于确定新的治疗靶标。

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