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裂殖酵母中的染色体构象图谱揭示了细胞周期依赖性的亚核结构。

Chromosome conformation maps in fission yeast reveal cell cycle dependent sub nuclear structure.

作者信息

Grand Ralph S, Pichugina Tatyana, Gehlen Lutz R, Jones M Beatrix, Tsai Peter, Allison Jane R, Martienssen Robert, O'Sullivan Justin M

机构信息

Liggins institute, University of Auckland, Grafton Auckland 1032, NZ Institute of Natural and Mathematical Sciences, Massey University, Albany, Auckland 0745, NZ.

Liggins institute, University of Auckland, Grafton Auckland 1032, NZ.

出版信息

Nucleic Acids Res. 2014 Nov 10;42(20):12585-99. doi: 10.1093/nar/gku965. Epub 2014 Oct 23.

Abstract

Successful progression through the cell cycle requires spatial and temporal regulation of gene transcript levels and the number, positions and condensation levels of chromosomes. Here we present a high resolution survey of genome interactions in Schizosaccharomyces pombe using synchronized cells to investigate cell cycle dependent changes in genome organization and transcription. Cell cycle dependent interactions were captured between and within S. pombe chromosomes. Known features of genome organization (e.g. the clustering of telomeres and retrotransposon long terminal repeats (LTRs)) were observed throughout the cell cycle. There were clear correlations between transcript levels and chromosomal interactions between genes, consistent with a role for interactions in transcriptional regulation at specific stages of the cell cycle. In silico reconstructions of the chromosome organization within the S. pombe nuclei were made by polymer modeling. These models suggest that groups of genes with high and low, or differentially regulated transcript levels have preferred positions within the S. pombe nucleus. We conclude that the S. pombe nucleus is spatially divided into functional sub-nuclear domains that correlate with gene activity. The observation that chromosomal interactions are maintained even when chromosomes are fully condensed in M phase implicates genome organization in epigenetic inheritance and bookmarking.

摘要

细胞周期的顺利进行需要对基因转录水平以及染色体的数量、位置和凝聚水平进行空间和时间上的调控。在此,我们利用同步化细胞对粟酒裂殖酵母中的基因组相互作用进行了高分辨率研究,以探究基因组组织和转录过程中依赖细胞周期的变化。在粟酒裂殖酵母染色体之间以及染色体内部捕捉到了依赖细胞周期的相互作用。在整个细胞周期中都观察到了基因组组织的已知特征(例如端粒和逆转录转座子长末端重复序列(LTR)的聚集)。转录水平与基因之间的染色体相互作用之间存在明显的相关性,这与相互作用在细胞周期特定阶段的转录调控中所起的作用一致。通过聚合物建模对粟酒裂殖酵母细胞核内的染色体组织进行了计算机重建。这些模型表明,转录水平高、低或受到不同调控的基因群在粟酒裂殖酵母细胞核内具有优先位置。我们得出结论,粟酒裂殖酵母细胞核在空间上被划分为与基因活性相关的功能性亚核结构域。即使在M期染色体完全凝聚时染色体相互作用仍得以维持,这一观察结果表明基因组组织在表观遗传继承和标记中发挥作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b210/4227791/cf71c2e7a7cf/gku965fig1.jpg

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