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Workshop: Targeting mechanism of epigenetic factors

机译:研讨会:表观遗传因素的靶向机制

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Summary form only given. Epigenetic patterns provide an extra layer of gene regulation beyond the genomic sequence and play a critical role in the maintenance of cell-type specific gene expression programs. Disruption of epigenetic regulation can cause severe diseases including cancer. During the past few years, large amount of epigenomic data have been generated displaying significant epigenetic pattern changes across cell-types and in disease tissues. On the other hand, the targeting mechanism for epigenetic factors remains poorly understood. A fundamental question is to what extent epigenetic targeting is encoded in the genome. Unlike transcription factors, epigenetic factors typically do not directly interact with DNA and their targeting is associated with many weakly interactions. We have developed computational approaches to tackle this challenge and applied to prediction of genome-wide nucleosome positions and histone modification patterns from DNA sequence information. Our work has provided mechanistic insights into epigenetic targeting and can be used to develop tools to reverse specific disease-causing, aberrant epigenetic changes as a potential novel therapeutic approach for cancer and other diseases.
机译:仅提供摘要表格。表观遗传模式提供了基因组序列之外的额外基因调控层,并在维持细胞类型特异性基因表达程序中发挥了关键作用。表观遗传调控的破坏会导致包括癌症在内的严重疾病。在过去的几年中,已经产生了大量的表观基因组数据,显示了跨细胞类型和在疾病组织中的显着的表观遗传模式变化。另一方面,对表观遗传因素的靶向机制仍然知之甚少。一个基本的问题是在基因组中编码表观遗传靶向的程度。与转录因子不同,表观遗传因子通常不直接与DNA相互作用,其靶向作用与许多弱相互作用有关。我们已经开发了计算方法来应对这一挑战,并将其应用于从DNA序列信息中预测全基因组范围的核小体位置和组蛋白修饰模式。我们的工作为表观遗传靶向提供了机械学见解,可用于开发工具来逆转特定的致病性,异常的表观遗传变化,将其作为潜在的新型治疗癌症和其他疾病的方法。

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