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The transcriptional regulatory code of eukaryotic cells--insights from genome-wide analysis of chromatin organization and transcription factor binding.

机译:真核细胞的转录调控密码-来自染色质组织和转录因子结合的全基因组分析的见解。

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Control of eukaryotic gene expression involves combinatorial interactions between transcription factors and regulatory sequences in the genome. In addition, chromatin structure and modification states play key roles in determining the competence of transcription. The term 'transcriptional regulatory code' has been used to describe the interplay of these events in the complex control of transcription. With the maturation of methods for detecting in vivo protein-DNA interactions on a genome-wide scale, detailed maps of chromatin features and transcription factor localization over entire genomes of eukaryotic cells are enriching our understanding of the properties and nature of this transcriptional regulatory code. The rapidly growing number of maps has revealed the dynamic nature of nucleosome composition and chromatin remodeling at regulatory regions and highlighted some unexpected properties of transcriptional regulatory networks in eukaryotic cells.
机译:真核基因表达的控制涉及基因组中转录因子和调节序列之间的组合相互作用。另外,染色质结构和修饰状态在决定转录能力中起关键作用。术语“转录调控代码”已用于描述这些事件在复杂转录控制中的相互作用。随着在全基因组范围内检测体内蛋白质-DNA相互作用的方法的成熟,真核细胞整个基因组上染色质特征和转录因子定位的详细图谱丰富了我们对这种转录调控密码的性质和性质的理解。地图数量的迅速增长揭示了核小体组成和染色质在调控区域的重塑的动态特性,并突出了真核细胞转录调控网络的某些出乎意料的特性。

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