The assay for transposase-accessible chromatin using sequencing (ATAC-seq) is widely used to identify regulatory regions throughout the genome. However, very few studies have been performed at the single cell level (scATAC-seq) due to technical challenges. Here we developed a simple and robust plate-based scATAC-seq method, combining upfront bulk Tn5 tagging with single-nuclei sorting. We demonstrate that our method works robustly across various systems, including fresh and cryopreserved cells from primary tissues. By profiling over 3000 splenocytes, we identify distinct immune cell types and reveal cell type-specific regulatory regions and related transcription factors
Gene regulation is highly cell type-specific and understanding the function of non-coding genetic va...
Summary: Coupling assay for transposase-accessible chromatin sequencing (ATAC-seq) with microfluidic...
Gene regulation is highly cell type-specific and understanding the function of non-coding genetic va...
Recent technological advances have enabled massively parallel chromatin profiling with scATAC-seq (s...
How distinct transcriptional programs are enacted to generate cellular heterogeneity and plasticity,...
The identity of each cell in the human body is established and maintained through distinct gene expr...
The identity of each cell in the human body is established and maintained through distinct gene expr...
Environmental exposures, including microbes, toxic substances, and vaccines, can significantly impac...
Single-cell assay for transposase-accessible chromatin by sequencing (scATAC-seq) has emerged as a p...
Here we develop a high-throughput single-cell ATAC-seq (assay for transposition of accessible chroma...
Here we develop a high-throughput single-cell ATAC-seq (assay for transposition of accessible chroma...
Chromatin accessibility captures in vivo protein-chromosome binding status, and is considered an inf...
Chromatin accessibility captures in vivo protein-chromosome binding status, and is considered an inf...
Single-cell measurements of cellular characteristics have been instrumental in understanding the het...
Joint profiling of transcriptome and chromatin accessibility within single cells allows for the deco...
Gene regulation is highly cell type-specific and understanding the function of non-coding genetic va...
Summary: Coupling assay for transposase-accessible chromatin sequencing (ATAC-seq) with microfluidic...
Gene regulation is highly cell type-specific and understanding the function of non-coding genetic va...
Recent technological advances have enabled massively parallel chromatin profiling with scATAC-seq (s...
How distinct transcriptional programs are enacted to generate cellular heterogeneity and plasticity,...
The identity of each cell in the human body is established and maintained through distinct gene expr...
The identity of each cell in the human body is established and maintained through distinct gene expr...
Environmental exposures, including microbes, toxic substances, and vaccines, can significantly impac...
Single-cell assay for transposase-accessible chromatin by sequencing (scATAC-seq) has emerged as a p...
Here we develop a high-throughput single-cell ATAC-seq (assay for transposition of accessible chroma...
Here we develop a high-throughput single-cell ATAC-seq (assay for transposition of accessible chroma...
Chromatin accessibility captures in vivo protein-chromosome binding status, and is considered an inf...
Chromatin accessibility captures in vivo protein-chromosome binding status, and is considered an inf...
Single-cell measurements of cellular characteristics have been instrumental in understanding the het...
Joint profiling of transcriptome and chromatin accessibility within single cells allows for the deco...
Gene regulation is highly cell type-specific and understanding the function of non-coding genetic va...
Summary: Coupling assay for transposase-accessible chromatin sequencing (ATAC-seq) with microfluidic...
Gene regulation is highly cell type-specific and understanding the function of non-coding genetic va...