SummaryRegulation of stem cells depends on both tissue-specific transcriptional regulators and changes in chromatin organization, yet the coordination of these events in endogenous niches is poorly understood. In the Drosophila testis, local JAK-STAT signaling maintains germline and somatic stem cells (GSCs and cyst progenitor cells, or CPCs) in a single niche. Here we show that epigenetic regulation via the nucleosome-remodeling factor (NURF) complex ensures GSC and CPC maintenance by positively regulating JAK-STAT signaling, thereby preventing premature differentiation. Conversely, NURF is not required in early differentiating daughter cells of either lineage. Because three additional ATP-dependent chromatin remodelers (ACF, CHRAC, and dM...
Stem cells rely on instructive cues from their environment. Alterations in microenvironments might c...
Stem cell maintenance requires expression of genes essential for stemness and repression of differen...
SummarySteroid hormones are known systemic regulators of multiple normal and cancerous tissues; howe...
The self-renewing ability of a stem cell is controlled by its specialized micro-environment or niche...
Active adult stem cells maintain a bipotential state with progeny able to either self-renew or initi...
Signaling pathways and epigenetic mechanisms have both been shown to play essential roles in regulat...
SummaryThe ability of adult stem cells to maintain their undifferentiated state depends upon residen...
AbstractEstablishment and maintenance of functional stem cells is critical for organ development and...
Summary: The niche critically controls stem cell behavior, but its regulatory input at the whole-gen...
Stem cells are powerful and promising tools in regenerative medicine. Understanding how stem cells a...
SummaryStem cells will undergo self-renewal to produce new stem cells if they are maintained in thei...
Stem cells are powerful and promising tools in regenerative medicine. Understanding how stem cells a...
Stem cells are regulated by local signals, systemic signals and cell-intrinsic epigenetic modulation...
Many tissues are sustained by adult stem cells, which replace lost cells by differentiation and main...
AbstractStem cells are defined by the fact that they both self-renew, producing additional stem cell...
Stem cells rely on instructive cues from their environment. Alterations in microenvironments might c...
Stem cell maintenance requires expression of genes essential for stemness and repression of differen...
SummarySteroid hormones are known systemic regulators of multiple normal and cancerous tissues; howe...
The self-renewing ability of a stem cell is controlled by its specialized micro-environment or niche...
Active adult stem cells maintain a bipotential state with progeny able to either self-renew or initi...
Signaling pathways and epigenetic mechanisms have both been shown to play essential roles in regulat...
SummaryThe ability of adult stem cells to maintain their undifferentiated state depends upon residen...
AbstractEstablishment and maintenance of functional stem cells is critical for organ development and...
Summary: The niche critically controls stem cell behavior, but its regulatory input at the whole-gen...
Stem cells are powerful and promising tools in regenerative medicine. Understanding how stem cells a...
SummaryStem cells will undergo self-renewal to produce new stem cells if they are maintained in thei...
Stem cells are powerful and promising tools in regenerative medicine. Understanding how stem cells a...
Stem cells are regulated by local signals, systemic signals and cell-intrinsic epigenetic modulation...
Many tissues are sustained by adult stem cells, which replace lost cells by differentiation and main...
AbstractStem cells are defined by the fact that they both self-renew, producing additional stem cell...
Stem cells rely on instructive cues from their environment. Alterations in microenvironments might c...
Stem cell maintenance requires expression of genes essential for stemness and repression of differen...
SummarySteroid hormones are known systemic regulators of multiple normal and cancerous tissues; howe...