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基于 sciCUT&Tag 的可扩展单细胞染色质修饰组学分析

Scalable single-cell profiling of chromatin modifications with sciCUT&Tag.

机构信息

Basic Sciences Division, Fred Hutchinson Cancer Center, Seattle, WA, USA.

Molecular Medicine and Mechanisms of Disease (M3D) PhD Program, University of Washington, Seattle, WA, USA.

出版信息

Nat Protoc. 2024 Jan;19(1):83-112. doi: 10.1038/s41596-023-00905-9. Epub 2023 Nov 7.

Abstract

Cleavage under targets and tagmentation (CUT&Tag) is an antibody-directed in situ chromatin profiling strategy that is rapidly replacing immune precipitation-based methods, such as chromatin immunoprecipitation-sequencing. The efficiency of the method enables chromatin profiling in single cells but is limited by the numbers of cells that can be profiled. Here, we describe a combinatorial barcoding strategy for CUT&Tag that harnesses a nanowell dispenser for simple, high-resolution, high-throughput, single-cell chromatin profiling. In this single-cell combinatorial indexing CUT&Tag (sciCUT&Tag) protocol, lightly cross-linked nuclei are bound to magnetic beads and incubated with primary and secondary antibodies in bulk and then arrayed in a 96-well plate for a first round of cellular indexing by antibody-directed Tn5 tagmentation. The sample is then repooled, mixed and arrayed across 5,184 nanowells at a density of 12-24 nuclei per well for a second round of cellular indexing during PCR amplification of the sequencing-ready library. This protocol can be completed in 1.5 days by a research technician, and we illustrate the optimized protocol by profiling histone modifications associated with developmental gene repression (H3K27me3) as well as transcriptional activation (H3K4me1-2-3) in human peripheral blood mononuclear cells and use single-nucleotide polymorphisms to facilitate collision removal. We have also used sciCUT&Tag for simultaneous profiling of multiple chromatin epitopes in single cells. The reduced cost, improved resolution and scalability of sciCUT&Tag make it an attractive platform to profile chromatin features in single cells.

摘要

靶向切割(CUT&Tag)是一种抗体导向的原位染色质分析策略,它正在迅速取代基于免疫沉淀的方法,如染色质免疫沉淀测序。该方法的效率能够在单细胞中进行染色质分析,但受到可分析细胞数量的限制。在这里,我们描述了一种用于 CUT&Tag 的组合条形码策略,该策略利用纳升分配器实现简单、高分辨率、高通量的单细胞染色质分析。在这个单细胞组合索引 CUT&Tag(sciCUT&Tag)方案中,轻轻交联的核被结合到磁珠上,并在大量的初级和次级抗体中孵育,然后在 96 孔板中进行第一轮细胞索引,通过抗体定向的 Tn5 标签化。然后将样品重新汇集、混合并排列在 5184 个纳米孔中,每个孔的密度为 12-24 个核,用于在测序准备文库的 PCR 扩增过程中的第二轮细胞索引。该方案可以由研究技术员在 1.5 天内完成,我们通过对人类外周血单核细胞中与发育基因抑制(H3K27me3)以及转录激活(H3K4me1-2-3)相关的组蛋白修饰进行分析,展示了优化的方案,并利用单核苷酸多态性来促进碰撞消除。我们还将 sciCUT&Tag 用于单细胞中多个染色质表位的同时分析。sciCUT&Tag 的成本降低、分辨率提高和可扩展性使其成为在单细胞中分析染色质特征的有吸引力的平台。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dcec/11229882/1f2eba963919/nihms-1990485-f0001.jpg

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