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The Functional Topography of the Arabidopsis Genome Is Organized in a Reduced Number of Linear Motifs of Chromatin States

机译:拟南芥基因组的功能拓扑以减少的染色质状态线性基序组织。

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Chromatin is of major relevance for gene expression, cell division, and differentiation. Here, we determined the landscape of Arabidopsis thaliana chromatin states using 16 features, including DNA sequence, CG methylation, histone variants, and modifications. The combinatorial complexity of chromatin can be reduced to nine states that describe chromatin with high resolution and robustness. Each chromatin state has a strong propensity to associate with a subset of other states defining a discrete number of chromatin motifs. These topographical relationships revealed that an intergenic state, characterized by H3K27me3 and slightly enriched in activation marks, physically separates the canonical Polycomb chromatin and two heterochromatin states from the rest of the euchromatin domains. Genomic elements are distinguished by specific chromatin states: four states span genes from transcriptional start sites (TSS) to termination sites and two contain regulatory regions upstream of TSS. Polycomb regions and the rest of the euchromatin can be connected by two major chromatin paths. Sequential chromatin immunoprecipitation experiments demonstrated the occurrence of H3K27me3 and H3K4me3 in the same chromatin fiber, within a two to three nucleosome size range. Our data provide insight into the Arabidopsis genome topography and the establishment of gene expression patterns, specification of DNA replication origins, and definition of chromatin domains.
机译:染色质与基因表达,细胞分裂和分化有着重要的关系。在这里,我们使用16个特征(包括DNA序列,CG甲基化,组蛋白变体和修饰)确定了拟南芥染色质状态的景观。染色质的组合复杂性可以降低到描述染色质具有高分辨率和鲁棒性的九种状态。每个染色质状态都具有与其他状态的子集关联的强烈倾向,这些状态定义了离散数量的染色质基序。这些拓扑关系表明,以H3K27me3为特征并略微富含激活标记的基因间状态,将规范的Polycomb染色质和两个异染色质状态与其余的常染色质域物理隔离。基因组元件的特征在于特定的染色质状态:四个状态涵盖从转录起始位点(TSS)到终止位点的基因,另外两个包含TSS上游的调控区。聚梳区域和常染色质的其余部分可以通过两条主要的染色质路径连接。连续的染色质免疫沉淀实验表明,在2至3个核小体大小范围内,同一染色质纤维中存在H3K27me3和H3K4me3。我们的数据提供了对拟南芥基因组拓扑结构和基因表达模式的建立,DNA复制起点的规格以及染色质结构域定义的深入了解。

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