Würtele Hugo, Chartrand Pierre
Molecular Biology Program, Université de Montreal, CP 6128, succ. Centre-ville, Montréal, Québec, H3C 3J7, Canada.
Chromosome Res. 2006;14(5):477-95. doi: 10.1007/s10577-006-1075-0. Epub 2006 Jul 12.
Spatial proximity between genomic loci can play important roles in their function and regulation. We have developed an open-ended method based on Chromosome Conformation Capture technology allowing us to perform genome-wide scanning of the loci that form the spatial environment of a given locus at a given time. As a proof of principle we present the use of this methodology to investigate the dynamics of the spatial environment of the HoxB1 gene before and after the induction of its expression in mouse embryonic stem cells. Our results indicate that the HoxB1 locus' immediate spatial environment can be divided roughly into three parts: a first part is represented by a domain of immediate proximity on each side of the HoxB1 locus covering approximately 110 kb, a second part extends to a domain of 800 kb and a third part consists of distal intra-chromosomal and inter-chromosomal interactions. Consistent with FISH studies showing the decondensation and repositioning of HoxB1 outside of its chromosomal territory during its expression, the proportion of inter-chromosomal interactions between HoxB1 and the rest of the genome increases after its induction, while interactions with distal intra-chromosomal loci become less frequent. These results indicate that this technique can be used to determine the dynamics of loci interactions on a genome-wide scale.
基因组位点之间的空间接近性在其功能和调控中可能发挥重要作用。我们基于染色体构象捕获技术开发了一种开放式方法,使我们能够在给定时间对构成给定基因座空间环境的基因座进行全基因组扫描。作为原理验证,我们展示了使用这种方法来研究小鼠胚胎干细胞中HoxB1基因表达诱导前后其空间环境的动态变化。我们的结果表明,HoxB1基因座的直接空间环境大致可分为三个部分:第一部分由HoxB1基因座两侧紧邻的区域代表,覆盖约110 kb;第二部分延伸至800 kb的区域;第三部分由远端染色体内和染色体间相互作用组成。与荧光原位杂交研究结果一致,该研究表明HoxB1在表达过程中在其染色体区域外发生解聚和重新定位,诱导后HoxB1与基因组其余部分之间的染色体间相互作用比例增加,而与远端染色体内基因座的相互作用变得不那么频繁。这些结果表明,该技术可用于在全基因组范围内确定基因座相互作用的动态变化。