Epigenetics plays critical roles in controlling stem cell self-renewal and differentiation. Histone H1 is one of the most critical chromatin regulators, but its role in adult stem cell regulation remains unclear. Here we report that H1 is intrinsically required in the regulation of germline stem cells (GSCs) in the Drosophila ovary. The loss of H1 from GSCs causes their premature differentiation through activation of the key GSC differentiation factor bam. Interestingly, the acetylated H4 lysine 16 (H4K16ac) is selectively augmented in the H1-depleted GSCs. Furthermore, overexpression of mof reduces H1 association on chromatin. In contrast, the knocking down of mof significantly rescues the GSC loss phenotype. Taken together, these results ...
Many tissues are sustained by adult stem cells, which replace lost cells by differentiation and main...
Epigenetic silencing is critical for maintaining germline stem cells in Drosophila ovaries. However,...
Stem cells are powerful and promising tools in regenerative medicine. Understanding how stem cells a...
Stem cell maintenance requires expression of genes essential for stemness and repression of differen...
Before zygotic genome activation (ZGA), the quiescent genome undergoes reprogramming to transition i...
The self-renewing ability of a stem cell is controlled by its specialized micro-environment or niche...
A very important open question in stem cells regulation is how the fine balance between GSCs self-re...
AbstractMaintenance of adult stem cells is largely dependent on the balance between their self-renew...
Signaling pathways and epigenetic mechanisms have both been shown to play essential roles in regulat...
Epigenetic silencing is critical for maintaining germline stem cells in Drosophila ovaries. However,...
SummaryRegulation of stem cells depends on both tissue-specific transcriptional regulators and chang...
Germline-stem cells (GSCs) produce gametes and are thus true "immortal stem cells". In Drosophila ov...
Pluripotent embryonic stem cells (ESCs) are known to possess a relatively open chromatin structure; ...
<div><p>Pluripotent embryonic stem cells (ESCs) are known to possess a relatively open chromatin str...
Linker histone H1 plays a key role in facilitating folding of higher order chromatin structure. Prev...
Many tissues are sustained by adult stem cells, which replace lost cells by differentiation and main...
Epigenetic silencing is critical for maintaining germline stem cells in Drosophila ovaries. However,...
Stem cells are powerful and promising tools in regenerative medicine. Understanding how stem cells a...
Stem cell maintenance requires expression of genes essential for stemness and repression of differen...
Before zygotic genome activation (ZGA), the quiescent genome undergoes reprogramming to transition i...
The self-renewing ability of a stem cell is controlled by its specialized micro-environment or niche...
A very important open question in stem cells regulation is how the fine balance between GSCs self-re...
AbstractMaintenance of adult stem cells is largely dependent on the balance between their self-renew...
Signaling pathways and epigenetic mechanisms have both been shown to play essential roles in regulat...
Epigenetic silencing is critical for maintaining germline stem cells in Drosophila ovaries. However,...
SummaryRegulation of stem cells depends on both tissue-specific transcriptional regulators and chang...
Germline-stem cells (GSCs) produce gametes and are thus true "immortal stem cells". In Drosophila ov...
Pluripotent embryonic stem cells (ESCs) are known to possess a relatively open chromatin structure; ...
<div><p>Pluripotent embryonic stem cells (ESCs) are known to possess a relatively open chromatin str...
Linker histone H1 plays a key role in facilitating folding of higher order chromatin structure. Prev...
Many tissues are sustained by adult stem cells, which replace lost cells by differentiation and main...
Epigenetic silencing is critical for maintaining germline stem cells in Drosophila ovaries. However,...
Stem cells are powerful and promising tools in regenerative medicine. Understanding how stem cells a...