BackgroundSingle-cell transcriptome and single-cell methylome technologies have become powerful tools to study RNA and DNA methylation profiles of single cells at a genome-wide scale. A major challenge has been to understand the direct correlation of DNA methylation and gene expression within single-cells. Due to large cell-to-cell variability and the lack of direct measurements of transcriptome and methylome of the same cell, the association is still unclear.ResultsHere, we describe a novel method (scMT-seq) that simultaneously profiles both DNA methylome and transcriptome from the same cell. In sensory neurons, we consistently identify transcriptome and methylome heterogeneity among single cells but the majority of the expression variance...
Summary: Increasing evidence of functional and transcriptional heterogeneity in phenotypically simil...
As an essential epigenetic modification, DNA methylation is involved in many disease progressions th...
Next generation sequencing has been key in unlocking the ability to detect thousands of features at ...
BackgroundSingle-cell transcriptome and single-cell methylome technologies have become powerful tool...
We report scM&T-seq, a method for parallel single-cell genome-wide methylome and transcriptome seque...
Embryonic stem cells (ESCs) consist of a population of self-renewing cells displaying extensive phen...
<div><p>Embryonic stem cells (ESCs) consist of a population of self-renewing cells displaying extens...
Mammalian brain cells show a remarkable diversity, yet the regulatory DNA landscape underlying this ...
Parallel single-cell sequencing protocols represent powerful methods for investigating regulatory re...
SummaryMethods for single-cell genome and transcriptome sequencing have contributed to our understan...
Methods for single-cell genome and transcriptome sequencing have contributed to our understanding of...
Single-cell technologies measure unique cellular signatures but are typically limited to a single mo...
The mammalian brain consists of a vast network of neurons and non-neuronal cells with diverse morpho...
In mammals, DNA methylation is essential for development, and helps determine cell identity in over ...
Increasing evidence of functional and transcriptional heterogeneity in phenotypically similar single...
Summary: Increasing evidence of functional and transcriptional heterogeneity in phenotypically simil...
As an essential epigenetic modification, DNA methylation is involved in many disease progressions th...
Next generation sequencing has been key in unlocking the ability to detect thousands of features at ...
BackgroundSingle-cell transcriptome and single-cell methylome technologies have become powerful tool...
We report scM&T-seq, a method for parallel single-cell genome-wide methylome and transcriptome seque...
Embryonic stem cells (ESCs) consist of a population of self-renewing cells displaying extensive phen...
<div><p>Embryonic stem cells (ESCs) consist of a population of self-renewing cells displaying extens...
Mammalian brain cells show a remarkable diversity, yet the regulatory DNA landscape underlying this ...
Parallel single-cell sequencing protocols represent powerful methods for investigating regulatory re...
SummaryMethods for single-cell genome and transcriptome sequencing have contributed to our understan...
Methods for single-cell genome and transcriptome sequencing have contributed to our understanding of...
Single-cell technologies measure unique cellular signatures but are typically limited to a single mo...
The mammalian brain consists of a vast network of neurons and non-neuronal cells with diverse morpho...
In mammals, DNA methylation is essential for development, and helps determine cell identity in over ...
Increasing evidence of functional and transcriptional heterogeneity in phenotypically similar single...
Summary: Increasing evidence of functional and transcriptional heterogeneity in phenotypically simil...
As an essential epigenetic modification, DNA methylation is involved in many disease progressions th...
Next generation sequencing has been key in unlocking the ability to detect thousands of features at ...