Epithelial stem cells are maintained within niches that promote self-renewal by providing signals that specify the stem cell fate. In the Drosophila ovary, epithelial follicle stem cells (FSCs) reside in niches at the anterior tip of the tissue and support continuous growth of the ovarian follicle epithelium. Here, we demonstrate that a neighboring dynamic population of stromal cells, called escort cells, are FSC niche cells. We show that escort cells produce both Wingless and Hedgehog ligands for the FSC lineage, and that Wingless signaling is specific for the FSC niche whereas Hedgehog signaling is active in both FSCs and daughter cells. In addition, we show that multiple escort cells simultaneously encapsulate germ cell cysts and contact...
Adult stem cells commonly give rise to transit-amplifying progenitors, whose progeny differentiate i...
International audienceThe extracellular matrix plays an essential role for stem cell differentiation...
International audienceThe extracellular matrix plays an essential role for stem cell differentiation...
The adult stem cell niche microenvironment is essential for maintenance and self renewal of the cell...
SummaryAdult epithelial stem cells are thought to reside in specific niches, where they are maintain...
The mechanisms underlying adult stem cell behavior are likely to be diverse and have not yet been in...
The mechanisms underlying adult stem cell behavior are likely to be diverse and have not yet been in...
<div><p>Epithelial stem cells are routinely lost or damaged during adult life and must therefore be ...
SummaryRapid progress has recently been made regarding how the niche controls stem cell function, bu...
Epithelial stem cells are routinely lost or damaged during adult life and must therefore be replaced...
All multicellular organisms constantly need to replace aged or damaged cells. This vital task of tis...
<div><p>Stem cells reside in specialised microenvironments, or niches, which often contain support c...
The Drosophila ovary has been a favorite model for the study of stem cells within their niche. In th...
Adult stem cells commonly give rise to transit-amplifying progenitors, whose progeny differentiate i...
Here we show that multiple modes of Notch signaling activation specify the complexity of spatial cel...
Adult stem cells commonly give rise to transit-amplifying progenitors, whose progeny differentiate i...
International audienceThe extracellular matrix plays an essential role for stem cell differentiation...
International audienceThe extracellular matrix plays an essential role for stem cell differentiation...
The adult stem cell niche microenvironment is essential for maintenance and self renewal of the cell...
SummaryAdult epithelial stem cells are thought to reside in specific niches, where they are maintain...
The mechanisms underlying adult stem cell behavior are likely to be diverse and have not yet been in...
The mechanisms underlying adult stem cell behavior are likely to be diverse and have not yet been in...
<div><p>Epithelial stem cells are routinely lost or damaged during adult life and must therefore be ...
SummaryRapid progress has recently been made regarding how the niche controls stem cell function, bu...
Epithelial stem cells are routinely lost or damaged during adult life and must therefore be replaced...
All multicellular organisms constantly need to replace aged or damaged cells. This vital task of tis...
<div><p>Stem cells reside in specialised microenvironments, or niches, which often contain support c...
The Drosophila ovary has been a favorite model for the study of stem cells within their niche. In th...
Adult stem cells commonly give rise to transit-amplifying progenitors, whose progeny differentiate i...
Here we show that multiple modes of Notch signaling activation specify the complexity of spatial cel...
Adult stem cells commonly give rise to transit-amplifying progenitors, whose progeny differentiate i...
International audienceThe extracellular matrix plays an essential role for stem cell differentiation...
International audienceThe extracellular matrix plays an essential role for stem cell differentiation...