拓扑结构域的反转导致其基因表达的限制性变化,并影响结构域间的通信

Rafael Galupa, Christel Picard, N. Servant, E. Nora, Y. Zhan, J. V. Bemmel, F. Marjou, Colin Johanneau, Maud Borensztein, K. Ancelin, L. Giorgetti, E. Heard
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引用次数: 6

摘要

基因组拓扑结构与基因表达调控之间的相互作用尚不清楚。基因组拓扑结构的分子因子,如CTCF和内聚蛋白的耗竭会导致基因表达的适度改变,而涉及拓扑相关结构域(TADs)边界的基因组重排会破坏正常的基因表达,并可能导致病理表型。在这里,我们在x失活中心(Xic)内反转了几乎整个TAD (300kb中的245kb),使其边界保持完整。这导致TAD内拓扑接触的显著重排,主要是根据潜在CTCF结合位点的方向,但表明不同CTCF位点的“接触”潜力存在异质性。反转也导致与邻近TAD的接触绝缘增加。在小鼠胚胎干细胞和分化过程中,倒位TAD内的大多数基因的表达不受影响。有趣的是,控制x染色体失活的非编码转录物Xist的邻近TAD的表达异常上调。在小鼠胚胎中,同样的倒置导致Xist表达偏倚,但x -失活选择比与野生型没有显著偏差。较小的缺失和TAD内特定CTCF位点簇的倒置导致类似的结果:接触重排,局部基因表达的有限变化,但Xist表达的显著变化。我们的研究表明,TAD内的调控相互作用的连接可以影响邻近TAD中基因的表达,突出了TAD间通信机制的存在。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Inversion of a topological domain leads to restricted changes in its gene expression and affects interdomain communication
The interplay between the topological organization of the genome and the regulation of gene expression remains unclear. Depletion of molecular factors underlying genome topology, such as CTCF and cohesin, leads to modest alterations in gene expression, while genomic rearrangements involving boundaries of topologically associating domains (TADs) disrupt normal gene expression and can lead to pathological phenotypes. Here we inverted an almost entire TAD (245kb out of 300kb) within the X-inactivation centre (Xic), leaving its boundaries intact. This led to a significant rearrangement of topological contacts within the TAD, mostly in accordance to the orientation of underlying CTCF binding sites but suggesting heterogeneity in the “contact” potential of different CTCF sites. The inversion also led to increased contact insulation with the neighbouring TAD. Expression of most genes within the inverted TAD remained unaffected in mouse embryonic stem cells and during differentiation. Interestingly, expression in the neighbouring TAD of the noncoding transcript Xist, which controls X-chromosome inactivation, was ectopically upregulated. The same inversion in mouse embryos led to a bias in Xist expression, but X-inactivation choice ratios did not significantly deviate from wild type. Smaller deletions and inversions of specific clusters of CTCF sites within the TAD led to similar results: rearrangement of contacts, limited changes in local gene expression but significant changes in Xist expression. Our study suggests that the wiring of regulatory interactions within a TAD can influence the expression of genes in neighbouring TADs, highlighting the existence of mechanisms for inter-TAD communication.
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