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Three-dimensional regulation of transcription

机译:转录的三维调控

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Cells can adapt to environment and development by reconstructing their transcriptional networks to regulate diverse cellular processes without altering the underlying DNA sequences. These alterations, namely epigenetic changes, occur during cell division, differentiation and cell death. Numerous evidences demonstrate that epigenetic changes are governed by various types of determinants, including DNA methylation patterns, histone posttranslational modification signatures, histone variants, chromatin remodeling, and recently discovered chromosome conformation characteristics and non-coding RNAs (ncRNAs). Here, we highlight recent efforts on how the two latter epigenetic factors participate in the sophisticated transcriptional process and describe emerging techniques which permit us to uncover and gain insights into the fascinating genomic regulation
机译:细胞可以通过重建其转录网络以调节多种细胞过程而无需改变基础DNA序列,从而适应环境和发育。这些改变,即表观遗传学改变,发生在细胞分裂,分化和细胞死亡期间。大量证据表明,表观遗传变化受各种类型的决定因素控制,包括DNA甲基化模式,组蛋白翻译后修饰标记,组蛋白变体,染色质重塑以及最近发现的染色体构象特征和非编码RNA(ncRNA)。在这里,我们重点介绍最近关于后两个表观遗传因素如何参与复杂转录过程的工作,并描述新兴技术,这些技术使我们能够发现并深入了解迷人的基因组调控

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