Rovirosa Llorenç, Tomás-Daza Laureano, Urmeneta Blanca, Valencia Alfonso, Javierre Biola M
Josep Carreras Leukaemia Research Institute.
Josep Carreras Leukaemia Research Institute; Barcelona Supercomputing Center.
J Vis Exp. 2023 Apr 21(194). doi: 10.3791/65316.
Spatiotemporal gene transcription is tightly regulated by distal regulatory elements, such as enhancers and silencers, which rely on physical proximity with their target gene promoters to control transcription. Although these regulatory elements are easy to identify, their target genes are difficult to predict, since most of them are cell-type specific and may be separated by hundreds of kilobases in the linear genome sequence, skipping over other non-target genes. For several years, Promoter Capture Hi-C (PCHi-C) has been the gold standard for the association of distal regulatory elements to their target genes. However, PCHi-C relies on the availability of millions of cells, prohibiting the study of rare cell populations such as those commonly obtained from primary tissues. To overcome this limitation, low input Capture Hi-C (liCHi-C), a cost-effective and customizable method to identify the repertoire of distal regulatory elements controlling each gene of the genome, has been developed. liCHi-C relies on a similar experimental and computational framework as PCHi-C, but by employing minimal tube changes, modifying the reagent concentration and volumes, and swapping or eliminating steps, it accounts for minimal material loss during library construction. Collectively, liCHi-C enables the study of gene regulation and spatiotemporal genome organization in the context of developmental biology and cellular function.
时空基因转录受到远端调控元件(如增强子和沉默子)的严格调控,这些元件依赖于与其靶基因启动子的物理接近性来控制转录。尽管这些调控元件易于识别,但其靶基因却难以预测,因为它们大多数是细胞类型特异性的,并且在线性基因组序列中可能相隔数百千碱基,跨越其他非靶基因。多年来,启动子捕获Hi-C(PCHi-C)一直是将远端调控元件与其靶基因关联的金标准。然而,PCHi-C依赖于数百万个细胞的可用性,这使得对罕见细胞群体(如通常从原代组织获得的细胞群体)的研究受到限制。为了克服这一限制,已经开发出低输入捕获Hi-C(liCHi-C),这是一种经济高效且可定制的方法,用于识别控制基因组中每个基因的远端调控元件库。liCHi-C依赖于与PCHi-C类似的实验和计算框架,但通过尽量减少管的更换、改变试剂浓度和体积以及交换或省略步骤,它在文库构建过程中造成的材料损失最小。总体而言,liCHi-C能够在发育生物学和细胞功能的背景下研究基因调控和时空基因组组织。