Technology Innovation Lab, New York Genome Center, New York, NY, USA.
Department of Pathology, Stanford University, Stanford, CA, USA.
Nat Biotechnol. 2021 Oct;39(10):1246-1258. doi: 10.1038/s41587-021-00927-2. Epub 2021 Jun 3.
Recent technological advances have enabled massively parallel chromatin profiling with scATAC-seq (single-cell assay for transposase accessible chromatin by sequencing). Here we present ATAC with select antigen profiling by sequencing (ASAP-seq), a tool to simultaneously profile accessible chromatin and protein levels. Our approach pairs sparse scATAC-seq data with robust detection of hundreds of cell surface and intracellular protein markers and optional capture of mitochondrial DNA for clonal tracking, capturing three distinct modalities in single cells. ASAP-seq uses a bridging approach that repurposes antibody:oligonucleotide conjugates designed for existing technologies that pair protein measurements with single-cell RNA sequencing. Together with DOGMA-seq, an adaptation of CITE-seq (cellular indexing of transcriptomes and epitopes by sequencing) for measuring gene activity across the central dogma of gene regulation, we demonstrate the utility of systematic multi-omic profiling by revealing coordinated and distinct changes in chromatin, RNA and surface proteins during native hematopoietic differentiation and peripheral blood mononuclear cell stimulation and as a combinatorial decoder and reporter of multiplexed perturbations in primary T cells.
最近的技术进步使得大规模平行染色质分析成为可能,其方法是 scATAC-seq(通过测序对转座酶可及染色质进行单细胞分析)。本文中我们提出了通过测序对选择的抗原进行染色质可及性和蛋白水平分析(ASAP-seq),这是一种同时分析染色质可及性和蛋白水平的工具。我们的方法将稀疏 scATAC-seq 数据与对数百种细胞表面和细胞内蛋白标志物的稳健检测相结合,并可选地捕获线粒体 DNA 以进行克隆追踪,从而在单个细胞中捕获三种不同的模态。ASAP-seq 使用桥接方法,重新利用了设计用于现有技术的抗体:寡核苷酸缀合物,这些技术将蛋白测量与单细胞 RNA 测序相结合。与 DOGMA-seq 一起,这是 CITE-seq(通过测序对转录组和表位进行细胞索引)的一种改编,用于测量基因调控中心法则中的基因活性,我们通过揭示天然造血分化和外周血单个核细胞刺激过程中染色质、RNA 和表面蛋白的协调和独特变化,以及作为原发性 T 细胞中多重扰动的组合解码器和报告器,展示了系统的多组学分析的实用性。