Genome-wide profiling of histone modifications can reveal not only the location and activity state of regulatory elements, but also the regulatory mechanisms involved in cell-type-specific gene expression during development and disease pathology. Conventional assays to profile histone modifications in bulk tissues lack single-cell resolution. Here we describe an ultra-high-throughput method, Paired-Tag, for joint profiling of histone modifications and transcriptome in single cells to produce cell-type-resolved maps of chromatin state and transcriptome in complex tissues. We used this method to profile five histone modifications jointly with transcriptome in the adult mouse frontal cortex and hippocampus. Integrative analysis of the resultin...
Transcriptional and histone modification profiles were analysed in detail across several regions of ...
Mammalian brain cells show a remarkable diversity, yet the regulatory DNA landscape underlying this ...
Mammalian development including embryogenesis requires coordinated gene expression in order to contr...
We previously reported Paired-Tag, a combinatorial indexing-based method that can simultaneously map...
Simultaneous profiling of transcriptome and chromatin accessibility within single cells is a powerfu...
Emerging spatial technologies, including spatial transcriptomics and spatial epigenomics, are becomi...
Recent advances in single-cell sequencing technologies have enabled simultaneous measurement of mult...
The mammalian brain consists of a vast network of neurons and non-neuronal cells with diverse morpho...
ABSTRACT Genome-wide analysis of chromatin accessibility in primary tissues has uncovered millions o...
SUMMARY Embryogenesis requires epigenetic information that allows each cell to respond appropriately...
The nervous system of higher eukaryotes is composed of numerous types of neurons and glia that toget...
We report the application of single-molecule-based sequencing technology for high-throughput profili...
Detailed characterization of the cell types in the human brain requires scalable experimental approa...
Detailed characterization of the cell types in the human brain requires scalable experimental approa...
Chromatin profiling at locus resolution uncovers gene regulatory features that define cell types and...
Transcriptional and histone modification profiles were analysed in detail across several regions of ...
Mammalian brain cells show a remarkable diversity, yet the regulatory DNA landscape underlying this ...
Mammalian development including embryogenesis requires coordinated gene expression in order to contr...
We previously reported Paired-Tag, a combinatorial indexing-based method that can simultaneously map...
Simultaneous profiling of transcriptome and chromatin accessibility within single cells is a powerfu...
Emerging spatial technologies, including spatial transcriptomics and spatial epigenomics, are becomi...
Recent advances in single-cell sequencing technologies have enabled simultaneous measurement of mult...
The mammalian brain consists of a vast network of neurons and non-neuronal cells with diverse morpho...
ABSTRACT Genome-wide analysis of chromatin accessibility in primary tissues has uncovered millions o...
SUMMARY Embryogenesis requires epigenetic information that allows each cell to respond appropriately...
The nervous system of higher eukaryotes is composed of numerous types of neurons and glia that toget...
We report the application of single-molecule-based sequencing technology for high-throughput profili...
Detailed characterization of the cell types in the human brain requires scalable experimental approa...
Detailed characterization of the cell types in the human brain requires scalable experimental approa...
Chromatin profiling at locus resolution uncovers gene regulatory features that define cell types and...
Transcriptional and histone modification profiles were analysed in detail across several regions of ...
Mammalian brain cells show a remarkable diversity, yet the regulatory DNA landscape underlying this ...
Mammalian development including embryogenesis requires coordinated gene expression in order to contr...