AbstractAdult intestinal tissues, exposed to the external environment, play important roles including barrier and nutrient-absorption functions. These functions are ensured by adequately controlled rapid-cell metabolism. GATA transcription factors play essential roles in the development and maintenance of adult intestinal tissues both in vertebrates and invertebrates. We investigated the roles of GATAe, the Drosophila intestinal GATA factor, in adult midgut homeostasis with its first-generated knock-out mutant as well as cell type-specific RNAi and overexpression experiments. Our results indicate that GATAe is essential for proliferation and maintenance of intestinal stem cells (ISCs). Also, GATAe is involved in the differentiation of enter...
The proliferation of intestinal stem cells (ISCs) and differentiation of enteroblasts to form mature...
The Drosophila GATA factor gene serpent (srp) is required for the early differentiation of the anter...
SummaryBackgroundEnteroendocrine cells populate gastrointestinal tissues and are known to translate ...
AbstractAdult intestinal tissues, exposed to the external environment, play important roles includin...
The GATA family of transcription factors is implicated in numerous developmental and physiological p...
The digestive tract is subjected to many aggressions throughout animal life. Since disruptions of gu...
SummaryThe intestinal epithelium is the most rapidly self-renewing tissue in adult animals and maint...
Stem cell-mediated tissue repair is a promising approach in regenerative medicine. Intestinal epithe...
Epithelial homeostasis requires the precise balance of epithelial stem/progenitor proliferation and ...
Epithelial homeostasis requires the precise balance of epithelial stem/progenitor proliferation and ...
AbstractThe intestinal epithelium performs vital roles in organ function by absorbing nutrients and ...
The intestinal epithelium is the most rapidly self-renewing tissue in adult animals and maintained b...
Adult tissue homeostasis requires a tight balance between the removal of old or damaged cells and th...
Summary: Intestinal stem cells in the adult Drosophila midgut are regulated by growth factors produc...
Proper organ function and tissue maintenance is crucial for the longevity of adult organisms. Adult ...
The proliferation of intestinal stem cells (ISCs) and differentiation of enteroblasts to form mature...
The Drosophila GATA factor gene serpent (srp) is required for the early differentiation of the anter...
SummaryBackgroundEnteroendocrine cells populate gastrointestinal tissues and are known to translate ...
AbstractAdult intestinal tissues, exposed to the external environment, play important roles includin...
The GATA family of transcription factors is implicated in numerous developmental and physiological p...
The digestive tract is subjected to many aggressions throughout animal life. Since disruptions of gu...
SummaryThe intestinal epithelium is the most rapidly self-renewing tissue in adult animals and maint...
Stem cell-mediated tissue repair is a promising approach in regenerative medicine. Intestinal epithe...
Epithelial homeostasis requires the precise balance of epithelial stem/progenitor proliferation and ...
Epithelial homeostasis requires the precise balance of epithelial stem/progenitor proliferation and ...
AbstractThe intestinal epithelium performs vital roles in organ function by absorbing nutrients and ...
The intestinal epithelium is the most rapidly self-renewing tissue in adult animals and maintained b...
Adult tissue homeostasis requires a tight balance between the removal of old or damaged cells and th...
Summary: Intestinal stem cells in the adult Drosophila midgut are regulated by growth factors produc...
Proper organ function and tissue maintenance is crucial for the longevity of adult organisms. Adult ...
The proliferation of intestinal stem cells (ISCs) and differentiation of enteroblasts to form mature...
The Drosophila GATA factor gene serpent (srp) is required for the early differentiation of the anter...
SummaryBackgroundEnteroendocrine cells populate gastrointestinal tissues and are known to translate ...