SummaryStem cells possess the capacity to generate two cells of distinct fate upon division: one cell retaining stem cell identity and the other cell destined to differentiate. These cell fates are established by cell-type-specific genetic networks. To comprehensively identify components of these networks, we performed a large-scale RNAi screen in Drosophila female germline stem cells (GSCs) covering ∼25% of the genome. The screen identified 366 genes that affect GSC maintenance, differentiation, or other processes involved in oogenesis. Comparison of GSC regulators with neural stem cell self-renewal factors identifies common and cell-type-specific self-renewal genes. Importantly, we identify the histone methyltransferase Set1 as a GSC-spec...
The intestinal epithelium is the most rapidly self-renewing tissue in adult animals and maintained b...
AbstractStem cells are defined by the fact that they both self-renew, producing additional stem cell...
SummaryIn this study, we uncover a role for microRNAs (miRNAs) in Drosophila germline stem cell (GSC...
SummaryThe balance between stem cell self-renewal and differentiation is precisely controlled to ens...
The unique ability of stem cells to differentiate into at least one type of cell and to self-renew h...
SummaryThe central question in stem cell regulation is how the balance between self-renewal and diff...
SummaryThe balance between stem cell self-renewal and differentiation is precisely controlled to ens...
Summary Complex regulatory networks regulate stem cell behavior and contributions to tissue growth, ...
SummaryThe intestinal epithelium is the most rapidly self-renewing tissue in adult animals and maint...
AbstractMaintenance of adult stem cells is largely dependent on the balance between their self-renew...
SummaryDrosophila neuroblasts (NBs) have emerged as a model for stem cell biology that is ideal for ...
AbstractWe developed a method to highly purify germline stem cells (GSCs) from the Drosophila ovary,...
The intestinal epithelium is the most rapidly self-renewing tissue in adult animals and maintained b...
The intestinal epithelium is the most rapidly self-renewing tissue in adult animals and maintained b...
The intestinal epithelium is the most rapidly self-renewing tissue in adult animals and maintained b...
The intestinal epithelium is the most rapidly self-renewing tissue in adult animals and maintained b...
AbstractStem cells are defined by the fact that they both self-renew, producing additional stem cell...
SummaryIn this study, we uncover a role for microRNAs (miRNAs) in Drosophila germline stem cell (GSC...
SummaryThe balance between stem cell self-renewal and differentiation is precisely controlled to ens...
The unique ability of stem cells to differentiate into at least one type of cell and to self-renew h...
SummaryThe central question in stem cell regulation is how the balance between self-renewal and diff...
SummaryThe balance between stem cell self-renewal and differentiation is precisely controlled to ens...
Summary Complex regulatory networks regulate stem cell behavior and contributions to tissue growth, ...
SummaryThe intestinal epithelium is the most rapidly self-renewing tissue in adult animals and maint...
AbstractMaintenance of adult stem cells is largely dependent on the balance between their self-renew...
SummaryDrosophila neuroblasts (NBs) have emerged as a model for stem cell biology that is ideal for ...
AbstractWe developed a method to highly purify germline stem cells (GSCs) from the Drosophila ovary,...
The intestinal epithelium is the most rapidly self-renewing tissue in adult animals and maintained b...
The intestinal epithelium is the most rapidly self-renewing tissue in adult animals and maintained b...
The intestinal epithelium is the most rapidly self-renewing tissue in adult animals and maintained b...
The intestinal epithelium is the most rapidly self-renewing tissue in adult animals and maintained b...
AbstractStem cells are defined by the fact that they both self-renew, producing additional stem cell...
SummaryIn this study, we uncover a role for microRNAs (miRNAs) in Drosophila germline stem cell (GSC...