SummaryStem cells require specialized local microenvironments, termed niches, for normal retention, proliferation, and multipotency. Niches are composed of cells together with their associated extracellular matrix (ECM). Currently, the roles of ECM in regulating niche functions are poorly understood. Here, we demonstrate that Perlecan (Pcan), a highly conserved ECM component, controls intestinal stem cell (ISC) activities and ISC-ECM attachment in Drosophila adult posterior midgut. Loss of Pcan from ISCs, but not other surrounding cells, causes ISCs to detach from underlying ECM, lose their identity, and fail to proliferate. These defects are not a result of a loss of epidermal growth factor receptor (EGFR) or Janus kinase/signal transducer...
Adult stem cells vary widely in their rates of proliferation. Some stem cells are constitutively act...
Intestinal stem cells (ISCs) in the adult Drosophila midgut can respond to tissue damage and support...
Epithelial homeostasis requires the precise balance of epithelial stem/progenitor proliferation and ...
SummaryStem cells require specialized local microenvironments, termed niches, for normal retention, ...
Stem cells reside in specialized microenvironments or niches that balance stem cell proliferation an...
Stem cells reside in specialized microenvironments or niches that balance stem cell proliferation an...
AbstractTissue-specific stem cells are maintained by both local secreted signals and cell adhesion m...
SummaryBackgroundEnteroendocrine cells populate gastrointestinal tissues and are known to translate ...
Background: Enteroendocrine cells populate gastrointestinal tissues and are known to translate loca...
AbstractTissue-specific adult stem cells are commonly associated with local niche for their maintena...
Epithelial renewal in the Drosophila intestine is orchestrated by Intestinal Stem Cells (ISCs). Foll...
Abstract Stem cells are maintained in a specialized microenvironment called niche but the nature of ...
Intestinal stem cells (ISCs) in the Drosophila adult midgut are essential for maintaining tissue hom...
Adult stem cells vary widely in their rates of proliferation. Some stem cells are constitutively act...
AbstractThe Drosophila midgut has emerged as an attractive model system to study stem cell biology. ...
Adult stem cells vary widely in their rates of proliferation. Some stem cells are constitutively act...
Intestinal stem cells (ISCs) in the adult Drosophila midgut can respond to tissue damage and support...
Epithelial homeostasis requires the precise balance of epithelial stem/progenitor proliferation and ...
SummaryStem cells require specialized local microenvironments, termed niches, for normal retention, ...
Stem cells reside in specialized microenvironments or niches that balance stem cell proliferation an...
Stem cells reside in specialized microenvironments or niches that balance stem cell proliferation an...
AbstractTissue-specific stem cells are maintained by both local secreted signals and cell adhesion m...
SummaryBackgroundEnteroendocrine cells populate gastrointestinal tissues and are known to translate ...
Background: Enteroendocrine cells populate gastrointestinal tissues and are known to translate loca...
AbstractTissue-specific adult stem cells are commonly associated with local niche for their maintena...
Epithelial renewal in the Drosophila intestine is orchestrated by Intestinal Stem Cells (ISCs). Foll...
Abstract Stem cells are maintained in a specialized microenvironment called niche but the nature of ...
Intestinal stem cells (ISCs) in the Drosophila adult midgut are essential for maintaining tissue hom...
Adult stem cells vary widely in their rates of proliferation. Some stem cells are constitutively act...
AbstractThe Drosophila midgut has emerged as an attractive model system to study stem cell biology. ...
Adult stem cells vary widely in their rates of proliferation. Some stem cells are constitutively act...
Intestinal stem cells (ISCs) in the adult Drosophila midgut can respond to tissue damage and support...
Epithelial homeostasis requires the precise balance of epithelial stem/progenitor proliferation and ...