Summary DNA methylation has been implicated as an epigenetic component of mechanisms that stabilize cell-fate decisions. Here, we have characterized the methylomes of human female hematopoietic stem/progenitor cells (HSPCs) and mature cells from the myeloid and lymphoid lineages. Hypomethylated regions (HMRs) associated with lineage-specific genes were often methylated in the opposing lineage. In HSPCs, these sites tended to show intermediate, complex patterns that resolve to uniformity upon differentiation, by increased or decreased methylation. Promoter HMRs shared across diverse cell types typically display a constitutive core that expands and contracts in a lineage-specific manner to fine-tune the expression of associated genes. Many ne...
The mechanism and significance of epigenetic variability in the same cell type between healthy indiv...
Stem cells balance cellular fates through asymmetric and symmetric divisions in order to self-renew ...
Stem cell maturation is a fundamental, yet poorly understood aspect of human development. We devised...
Epigenetic modifications must underlie lineage-specific differentiation as terminally differentiated...
In this study, we present integrated quantitative proteome, transcriptome, and methylome analyses of...
SUMMARY Mesenchymal stem cells (MSCs) have been identified in several adult tissues and have the abi...
<div><p>Epigenetic alterations during cellular differentiation are a key molecular mechanism which b...
Hematopoietic stem cells give rise to all blood cells in a differentiation process that involves wid...
DNA methylation is a dynamic epigenetic mark that undergoes extensive changes during differentiation...
Heritable epigenetic signatures are proposed to serve as an important regulatory mechanism in lineag...
DNA methylation is a dynamic epigenetic mark that undergoes extensive changes during differentiation...
DNA methylation is a mechanism of epigenetic regulation that is common to all vertebrates. Functiona...
Hematopoietic stem cells (HSCs) are responsible for the life-long production of all mature blood cel...
Epigenetic regulation plays an important role in cellular development and differentiation. A detaile...
SummaryThroughout development, cell fate decisions are converted into epigenetic information that de...
The mechanism and significance of epigenetic variability in the same cell type between healthy indiv...
Stem cells balance cellular fates through asymmetric and symmetric divisions in order to self-renew ...
Stem cell maturation is a fundamental, yet poorly understood aspect of human development. We devised...
Epigenetic modifications must underlie lineage-specific differentiation as terminally differentiated...
In this study, we present integrated quantitative proteome, transcriptome, and methylome analyses of...
SUMMARY Mesenchymal stem cells (MSCs) have been identified in several adult tissues and have the abi...
<div><p>Epigenetic alterations during cellular differentiation are a key molecular mechanism which b...
Hematopoietic stem cells give rise to all blood cells in a differentiation process that involves wid...
DNA methylation is a dynamic epigenetic mark that undergoes extensive changes during differentiation...
Heritable epigenetic signatures are proposed to serve as an important regulatory mechanism in lineag...
DNA methylation is a dynamic epigenetic mark that undergoes extensive changes during differentiation...
DNA methylation is a mechanism of epigenetic regulation that is common to all vertebrates. Functiona...
Hematopoietic stem cells (HSCs) are responsible for the life-long production of all mature blood cel...
Epigenetic regulation plays an important role in cellular development and differentiation. A detaile...
SummaryThroughout development, cell fate decisions are converted into epigenetic information that de...
The mechanism and significance of epigenetic variability in the same cell type between healthy indiv...
Stem cells balance cellular fates through asymmetric and symmetric divisions in order to self-renew ...
Stem cell maturation is a fundamental, yet poorly understood aspect of human development. We devised...