Maslan Annie, Altemose Nicolas, Marcus Jeremy, Mishra Reet, Brennan Lucy D, Sundararajan Kousik, Karpen Gary, Straight Aaron F, Streets Aaron
Department of Bioengineering, University of California, Berkeley, Berkeley, CA, USA.
UC Berkeley-UCSF Graduate Program in Bioengineering, University of California, Berkeley, Berkeley, CA, USA.
Nat Protoc. 2024 Dec;19(12):3697-3720. doi: 10.1038/s41596-024-01032-9. Epub 2024 Sep 5.
We recently developed directed methylation with long-read sequencing (DiMeLo-seq) to map protein-DNA interactions genome wide. DiMeLo-seq is capable of mapping multiple interaction sites on single DNA molecules, profiling protein binding in the context of endogenous DNA methylation, identifying haplotype-specific protein-DNA interactions and mapping protein-DNA interactions in repetitive regions of the genome that are difficult to study with short-read methods. With DiMeLo-seq, adenines in the vicinity of a protein of interest are methylated in situ by tethering the Hia5 methyltransferase to an antibody using protein A. Protein-DNA interactions are then detected by direct readout of adenine methylation with long-read, single-molecule DNA sequencing platforms such as Nanopore sequencing. Here we present a detailed protocol and practical guidance for performing DiMeLo-seq. This protocol can be run on nuclei from fresh, lightly fixed or frozen cells. The protocol requires 1-2 d for performing in situ targeted methylation, 1-5 d for library preparation depending on desired fragment length and 1-3 d for Nanopore sequencing depending on desired sequencing depth. The protocol requires basic molecular biology skills and equipment, as well as access to a Nanopore sequencer. We also provide a Python package, dimelo, for analysis of DiMeLo-seq data.
我们最近开发了长读长测序定向甲基化技术(DiMeLo-seq),用于在全基因组范围内绘制蛋白质-DNA相互作用图谱。DiMeLo-seq能够在单个DNA分子上绘制多个相互作用位点,在内源性DNA甲基化背景下分析蛋白质结合情况,识别单倍型特异性蛋白质-DNA相互作用,并在基因组的重复区域绘制蛋白质-DNA相互作用图谱,而这些区域很难用短读长方法进行研究。使用DiMeLo-seq时,通过将Hia5甲基转移酶与使用蛋白A的抗体相连,在感兴趣的蛋白质附近的腺嘌呤会原位甲基化。然后,使用长读长单分子DNA测序平台(如纳米孔测序)直接读取腺嘌呤甲基化来检测蛋白质-DNA相互作用。在此,我们提供了一份详细的操作方案和实用指南,用于执行DiMeLo-seq。该方案可以在来自新鲜、轻度固定或冷冻细胞的细胞核上运行。该方案进行原位靶向甲基化需要1至2天,根据所需片段长度,文库制备需要1至5天,根据所需测序深度,纳米孔测序需要1至3天。该方案需要基本的分子生物学技能和设备,以及使用纳米孔测序仪的权限。我们还提供了一个用于分析DiMeLo-seq数据的Python软件包dimelo。