Deng Xinxian, Ma Wenxiu, Ramani Vijay, Hill Andrew, Yang Fan, Ay Ferhat, Berletch Joel B, Blau Carl Anthony, Shendure Jay, Duan Zhijun, Noble William S, Disteche Christine M
Department of Pathology, University of Washington, Seattle, Washington, USA.
Department of Genome Sciences, University of Washington, Seattle, Washington, USA.
Genome Biol. 2015 Aug 7;16(1):152. doi: 10.1186/s13059-015-0728-8.
In mammals, one of the female X chromosomes and all imprinted genes are expressed exclusively from a single allele in somatic cells. To evaluate structural changes associated with allelic silencing, we have applied a recently developed Hi-C assay that uses DNase I for chromatin fragmentation to mouse F1 hybrid systems.
We find radically different conformations for the two female mouse X chromosomes. The inactive X has two superdomains of frequent intrachromosomal contacts separated by a boundary region. Comparison with the recently reported two-superdomain structure of the human inactive X shows that the genomic content of the superdomains differs between species, but part of the boundary region is conserved and located near the Dxz4/DXZ4 locus. In mouse, the boundary region also contains a minisatellite, Ds-TR, and both Dxz4 and Ds-TR appear to be anchored to the nucleolus. Genes that escape X inactivation do not cluster but are located near the periphery of the 3D structure, as are regions enriched in CTCF or RNA polymerase. Fewer short-range intrachromosomal contacts are detected for the inactive alleles of genes subject to X inactivation compared with the active alleles and with genes that escape X inactivation. This pattern is also evident for imprinted genes, in which more chromatin contacts are detected for the expressed allele.
By applying a novel Hi-C method to map allelic chromatin contacts, we discover a specific bipartite organization of the mouse inactive X chromosome that probably plays an important role in maintenance of gene silencing.
在哺乳动物中,雌性的两条X染色体之一以及所有印记基因在体细胞中仅从单个等位基因表达。为了评估与等位基因沉默相关的结构变化,我们将最近开发的使用DNA酶I进行染色质片段化的Hi-C分析应用于小鼠F1杂交系统。
我们发现两条雌性小鼠X染色体的构象截然不同。失活的X染色体有两个频繁发生染色体内接触的超级结构域,由一个边界区域分隔。与最近报道的人类失活X染色体的双超级结构域结构相比,超级结构域的基因组内容在物种间有所不同,但部分边界区域是保守的,且位于Dxz4/DXZ4基因座附近。在小鼠中,边界区域还包含一个小卫星Ds-TR,并且Dxz4和Ds-TR似乎都锚定在核仁上。逃避X染色体失活的基因并不聚集,而是位于三维结构的周边,富含CTCF或RNA聚合酶的区域也是如此。与活性等位基因以及逃避X染色体失活的基因相比,X染色体失活所涉及基因的失活等位基因检测到的短程染色体内接触较少。这种模式在印记基因中也很明显,其中表达等位基因检测到更多的染色质接触。
通过应用一种新的Hi-C方法来绘制等位基因染色质接触图谱,我们发现了小鼠失活X染色体的一种特定二分组织,这可能在基因沉默的维持中起重要作用。