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ScNMT-seq enables joint profiling of chromatin accessibility DNA methylation and transcription in single cells.


ABSTRACT: Parallel single-cell sequencing protocols represent powerful methods for investigating regulatory relationships, including epigenome-transcriptome interactions. Here, we report a single-cell method for parallel chromatin accessibility, DNA methylation and transcriptome profiling. scNMT-seq (single-cell nucleosome, methylation and transcription sequencing) uses a GpC methyltransferase to label open chromatin followed by bisulfite and RNA sequencing. We validate scNMT-seq by applying it to differentiating mouse embryonic stem cells, finding links between all three molecular layers and revealing dynamic coupling between epigenomic layers during differentiation.

SUBMITTER: Clark SJ 

PROVIDER: S-EPMC5823944 | biostudies-literature | 2018 Feb

REPOSITORIES: biostudies-literature

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scNMT-seq enables joint profiling of chromatin accessibility DNA methylation and transcription in single cells.

Clark Stephen J SJ   Argelaguet Ricard R   Kapourani Chantriolnt-Andreas CA   Stubbs Thomas M TM   Lee Heather J HJ   Alda-Catalinas Celia C   Krueger Felix F   Sanguinetti Guido G   Kelsey Gavin G   Marioni John C JC   Stegle Oliver O   Reik Wolf W  

Nature communications 20180222 1


Parallel single-cell sequencing protocols represent powerful methods for investigating regulatory relationships, including epigenome-transcriptome interactions. Here, we report a single-cell method for parallel chromatin accessibility, DNA methylation and transcriptome profiling. scNMT-seq (single-cell nucleosome, methylation and transcription sequencing) uses a GpC methyltransferase to label open chromatin followed by bisulfite and RNA sequencing. We validate scNMT-seq by applying it to differe  ...[more]

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