果蝇基因组的三维折叠和功能组织原则。

Three-dimensional folding and functional organization principles of the Drosophila genome.

机构信息

Institut de Génétique Humaine, UPR 1142, CNRS, 141 rue de la Cardonille, 34396 Montpellier Cedex 5, France.

出版信息

Cell. 2012 Feb 3;148(3):458-72. doi: 10.1016/j.cell.2012.01.010. Epub 2012 Jan 19.

Abstract

Chromosomes are the physical realization of genetic information and thus form the basis for its readout and propagation. Here we present a high-resolution chromosomal contact map derived from a modified genome-wide chromosome conformation capture approach applied to Drosophila embryonic nuclei. The data show that the entire genome is linearly partitioned into well-demarcated physical domains that overlap extensively with active and repressive epigenetic marks. Chromosomal contacts are hierarchically organized between domains. Global modeling of contact density and clustering of domains show that inactive domains are condensed and confined to their chromosomal territories, whereas active domains reach out of the territory to form remote intra- and interchromosomal contacts. Moreover, we systematically identify specific long-range intrachromosomal contacts between Polycomb-repressed domains. Together, these observations allow for quantitative prediction of the Drosophila chromosomal contact map, laying the foundation for detailed studies of chromosome structure and function in a genetically tractable system.

摘要

染色体是遗传信息的物理实现,因此构成了其读取和传播的基础。在这里,我们呈现了一张源自改良的全基因组染色体构象捕获方法的高分辨率染色体接触图谱,该方法应用于果蝇胚胎核。数据表明,整个基因组线性划分成明确界定的物理域,这些物理域与活性和抑制性表观遗传标记广泛重叠。染色体接触在域之间呈层次化组织。接触密度和域聚类的全局建模表明,非活性域被浓缩并局限于其染色体领地,而活性域则超出领地范围,形成远程的 intra- 和 interchromosomal 接触。此外,我们系统地识别了 Polycomb 抑制域之间的特定长距离的 intra-chromosomal 接触。这些观察结果共同允许对果蝇染色体接触图谱进行定量预测,为在遗传上易于处理的系统中研究染色体结构和功能奠定了基础。

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