School of Medicine, Tsinghua University, Beijing, 100084, China.
Department of Automation, Tsinghua University, Beijing, 100084, China; Beijing Institute of Collaborative Innovation, Beijing 100094, China.
J Genet Genomics. 2020 Dec 20;47(12):727-735. doi: 10.1016/j.jgg.2020.04.008. Epub 2020 Nov 7.
There is an increasing interest in understanding how three-dimensional organization of the genome is regulated. Different strategies have been used to identify genome-wide chromatin interactions. However, owing to current limitations in resolving genomic contacts, visualization and validation of these genomic loci at subkilobase resolution remain unsolved to date. Here, we describe Tn5 transposase-based fluorescence in situ hybridization (Tn5-FISH), a polymerase chain reaction-based, cost-effective imaging method, which can colocalize the genomic loci at subkilobase resolution, dissect genome architecture, and verify chromatin interactions detected by chromatin configuration capture-derived methods. To validate this method, short-range interactions in the keratin-encoding gene (KRT) locus in the topologically associated domain were imaged by triple-color Tn5-FISH, indicating that Tn5-FISH is very useful to verify short-range chromatin interactions inside the contact domain and TAD. Therefore, Tn5-FISH can be a powerful molecular tool for clinical detection of cytogenetic changes in numerous genetic diseases such as cancers.
人们越来越关注基因组三维结构的调控机制。目前已经有多种策略用于鉴定全基因组范围的染色质相互作用,但由于目前在解析基因组接触方面存在局限性,因此,在亚千碱基分辨率下对这些基因组位点进行可视化和验证仍然是一个尚未解决的问题。在这里,我们描述了一种基于 Tn5 转座酶的荧光原位杂交(Tn5-FISH)技术,这是一种基于聚合酶链反应的、具有成本效益的成像方法,可将基因组位点在亚千碱基分辨率下共定位,剖析基因组结构,并验证染色质构象捕获衍生方法检测到的染色质相互作用。为了验证该方法,我们通过三色 Tn5-FISH 对拓扑相关结构域中角蛋白编码基因(KRT)座的短距离相互作用进行了成像,表明 Tn5-FISH 非常有助于验证接触域和 TAD 内的短距离染色质相互作用。因此,Tn5-FISH 可以成为一种强大的分子工具,用于临床检测多种遗传疾病(如癌症)中的细胞遗传学变化。