Full-length RNA sequencing (RNA-Seq) has been applied to bulk tissue, cell lines and sorted cells to characterize transcriptomes1–11, but applying this technology to single cells has proven to be difficult, with less than ten single-cell transcriptomes having been analyzed thus far12,13. Although single splicing events have been described for ≤200 single cells with statistical confidence14,15, full-length mRNA analyses for hundreds of cells have not been reported. Single-cell short-read 3′ sequencing enables the identification of cellular subtypes16–21, but full-length mRNA isoforms for these cell types cannot be profiled. We developed a method that starts with bulk tissue and identifies single-cell types and their full-length RNA isoforms ...
Single-nucleus RNA sequencing (sNuc-seq) profiles RNA from tissues that are preserved or cannot be d...
Recent technical advances have enabled transcriptomics experiments at an unprecedented scale, and si...
Alternative splicing of RNAs generates isoform diversity, resulting in different proteins that are n...
Transcriptomic profiling of complex tissues by single-nucleus RNA-sequencing (snRNA-seq) affords som...
Transcriptomic profiling of complex tissues by single-nucleus RNA-sequencing (snRNA-seq) affords som...
Full-length SMART-Seq single-cell RNA-seq can be used to measure gene expression at isoform resoluti...
Diverse cell types have unique transcriptional signatures that are best interrogated at single-cell ...
Abstract Single-cell RNA-sequencing (scRNA-seq) is revolutionizing our understanding of the genomic,...
Significant heterogeneities in gene expression among individual cells are typically interrogated usi...
Splicing varies across brain regions, but the single-cell resolution of regional variation is unclea...
Single-nuclei RNA sequencing characterizes cell types at the gene level. However, compared to single...
A modified Chromium 10x droplet-based protocol that subsamples cells for both short-read and long-re...
Gene expression profiling techniques such as RNA sequencing has greatly contributed to our understan...
Single-cell RNA sequencing (RNA-seq) is now a widely implemented tool for assaying gene expression. ...
<div><p>To fully understand cell type identity and function in the nervous system there is a need to...
Single-nucleus RNA sequencing (sNuc-seq) profiles RNA from tissues that are preserved or cannot be d...
Recent technical advances have enabled transcriptomics experiments at an unprecedented scale, and si...
Alternative splicing of RNAs generates isoform diversity, resulting in different proteins that are n...
Transcriptomic profiling of complex tissues by single-nucleus RNA-sequencing (snRNA-seq) affords som...
Transcriptomic profiling of complex tissues by single-nucleus RNA-sequencing (snRNA-seq) affords som...
Full-length SMART-Seq single-cell RNA-seq can be used to measure gene expression at isoform resoluti...
Diverse cell types have unique transcriptional signatures that are best interrogated at single-cell ...
Abstract Single-cell RNA-sequencing (scRNA-seq) is revolutionizing our understanding of the genomic,...
Significant heterogeneities in gene expression among individual cells are typically interrogated usi...
Splicing varies across brain regions, but the single-cell resolution of regional variation is unclea...
Single-nuclei RNA sequencing characterizes cell types at the gene level. However, compared to single...
A modified Chromium 10x droplet-based protocol that subsamples cells for both short-read and long-re...
Gene expression profiling techniques such as RNA sequencing has greatly contributed to our understan...
Single-cell RNA sequencing (RNA-seq) is now a widely implemented tool for assaying gene expression. ...
<div><p>To fully understand cell type identity and function in the nervous system there is a need to...
Single-nucleus RNA sequencing (sNuc-seq) profiles RNA from tissues that are preserved or cannot be d...
Recent technical advances have enabled transcriptomics experiments at an unprecedented scale, and si...
Alternative splicing of RNAs generates isoform diversity, resulting in different proteins that are n...