Laboratory of Chromatin and Gene Expression, Babraham Research Campus, Cambridge, UK.
Nat Genet. 2010 Jan;42(1):53-61. doi: 10.1038/ng.496. Epub 2009 Dec 13.
The discovery of interchromosomal interactions in higher eukaryotes points to a functional interplay between genome architecture and gene expression, challenging the view of transcription as a one-dimensional process. However, the extent of interchromosomal interactions and the underlying mechanisms are unknown. Here we present the first genome-wide analysis of transcriptional interactions using the mouse globin genes in erythroid tissues. Our results show that the active globin genes associate with hundreds of other transcribed genes, revealing extensive and preferential intra- and interchromosomal transcription interactomes. We show that the transcription factor Klf1 mediates preferential co-associations of Klf1-regulated genes at a limited number of specialized transcription factories. Our results establish a new gene expression paradigm, implying that active co-regulated genes and their regulatory factors cooperate to create specialized nuclear hot spots optimized for efficient and coordinated transcriptional control.
真核生物中染色体间相互作用的发现表明基因组结构和基因表达之间存在功能相互作用,这挑战了转录是一个一维过程的观点。然而,染色体间相互作用的程度和潜在机制尚不清楚。在这里,我们使用红细胞组织中的小鼠珠蛋白基因,首次进行了转录相互作用的全基因组分析。我们的结果表明,活跃的珠蛋白基因与数百个其他转录基因相关联,揭示了广泛而优先的染色体内和染色体间转录相互作用组。我们表明,转录因子 Klf1 介导 Klf1 调节基因在有限数量的专门转录工厂中的优先共同关联。我们的结果建立了一个新的基因表达范例,暗示活跃的共同调节基因及其调节因子合作,以创建专门的核热点,优化高效和协调的转录控制。