SummaryStem cells will undergo self-renewal to produce new stem cells if they are maintained in their niches. The regulatory mechanisms that recruit and maintain stem cells in their niches are not well understood. In Drosophila testes, a group of 12 nondividing somatic cells, called the hub, identifies the stem cell niche by producing the growth factor Unpaired (Upd). Here, we show that Rap-GEF/Rap signaling controls stem cell anchoring to the niche through regulating DE-cadherin-mediated cell adhesion. Loss of function of a Drosophila Rap-GEF (Gef26) results in loss of both germline and somatic stem cells. The Gef26 mutation specifically impairs adherens junctions at the hub-stem cell interface, which results in the stem cells “drifting aw...
In organisms, a unique population of cells called stem cells sustains tissue homeostasis and repair....
SummaryThe ability of adult stem cells to maintain their undifferentiated state depends upon residen...
SummaryAdult stem cells reside in specialized regulatory microenvironments, or niches, where local s...
SummaryStem cells will undergo self-renewal to produce new stem cells if they are maintained in thei...
All multicellular organisms constantly need to replace aged or damaged cells. This vital task of tis...
Stem cells are powerful and promising tools in regenerative medicine. Understanding how stem cells a...
Stem cells are powerful and promising tools in regenerative medicine. Understanding how stem cells a...
Adult stem cells have the unique ability to either self-renew or differentiate, thus giving them tre...
Stem cells are powerful and promising tools in regenerative medicine. Understanding how stem cells a...
Adult stem cells have the unique ability to either self-renew or differentiate, thus giving them tre...
Summary: Homeostasis in adult tissues depends on the precise regulation of stem cells and their surr...
International audienceOur fascination for stem cells originates from their ability to divide asymmet...
<div><p>Stem cells in tissues reside in and receive signals from local microenvironments called nich...
Stem cells in tissues reside in and receive signals from local microenvironments called niches. Unde...
Stem cells, which regenerate tissue by producing differentiating cells, also produce cells that rene...
In organisms, a unique population of cells called stem cells sustains tissue homeostasis and repair....
SummaryThe ability of adult stem cells to maintain their undifferentiated state depends upon residen...
SummaryAdult stem cells reside in specialized regulatory microenvironments, or niches, where local s...
SummaryStem cells will undergo self-renewal to produce new stem cells if they are maintained in thei...
All multicellular organisms constantly need to replace aged or damaged cells. This vital task of tis...
Stem cells are powerful and promising tools in regenerative medicine. Understanding how stem cells a...
Stem cells are powerful and promising tools in regenerative medicine. Understanding how stem cells a...
Adult stem cells have the unique ability to either self-renew or differentiate, thus giving them tre...
Stem cells are powerful and promising tools in regenerative medicine. Understanding how stem cells a...
Adult stem cells have the unique ability to either self-renew or differentiate, thus giving them tre...
Summary: Homeostasis in adult tissues depends on the precise regulation of stem cells and their surr...
International audienceOur fascination for stem cells originates from their ability to divide asymmet...
<div><p>Stem cells in tissues reside in and receive signals from local microenvironments called nich...
Stem cells in tissues reside in and receive signals from local microenvironments called niches. Unde...
Stem cells, which regenerate tissue by producing differentiating cells, also produce cells that rene...
In organisms, a unique population of cells called stem cells sustains tissue homeostasis and repair....
SummaryThe ability of adult stem cells to maintain their undifferentiated state depends upon residen...
SummaryAdult stem cells reside in specialized regulatory microenvironments, or niches, where local s...