SummaryDifferentiating cells can dedifferentiate to replace stem cells in aged or damaged tissues, but the underlying mechanisms are unknown. In the Drosophila testis, a cluster of stromal cells called the hub creates a niche by locally activating Janus kinase-signal transducer and activator of transcription (Jak-STAT) signaling in adjacent germline and somatic stem cells. Here, we establish a system to study spermatogonial dedifferentiation. Ectopically expressing the differentiation factor bag-of-marbles (Bam) removes germline stem cells from the niche. However, withdrawing ectopic Bam causes interconnected spermatogonia to fragment, move into the niche, exchange positions with resident somatic stem cells, and establish contact with the h...
SummaryThe ability of adult stem cells to maintain their undifferentiated state depends upon residen...
At the apical tip of the Drosophila testis, germline and somatic stem cells surround a cluster of so...
AbstractUnderstanding how stem cells are maintained in their microenvironment (the niche) is vital f...
In organisms, a unique population of cells called stem cells sustains tissue homeostasis and repair....
Stem cells, which regenerate tissue by producing differentiating cells, also produce cells that rene...
Adult stem cells have the unique ability to either self-renew or differentiate, thus giving them tre...
Stem cells rely on instructive cues from their environment. Alterations in microenvironments might c...
SummaryAdult stem cells reside in specialized regulatory microenvironments, or niches, where local s...
In metazoans, tissue maintenance and regeneration depend on adult stem cells, which are characterize...
Adult stem cells reside in specialized regulatory microenvironments, or niches, where local signals ...
Stem cells are fascinating, as they supply the cells that construct our adult bodies and replenish, ...
AbstractEstablishment and maintenance of functional stem cells is critical for organ development and...
Stem cell maintenance is an essential process that is needed to preserve a delicate balance between ...
<div><p>At the apical tip of the <i>Drosophila</i> testis, germline and somatic stem cells surround ...
All multicellular organisms constantly need to replace aged or damaged cells. This vital task of tis...
SummaryThe ability of adult stem cells to maintain their undifferentiated state depends upon residen...
At the apical tip of the Drosophila testis, germline and somatic stem cells surround a cluster of so...
AbstractUnderstanding how stem cells are maintained in their microenvironment (the niche) is vital f...
In organisms, a unique population of cells called stem cells sustains tissue homeostasis and repair....
Stem cells, which regenerate tissue by producing differentiating cells, also produce cells that rene...
Adult stem cells have the unique ability to either self-renew or differentiate, thus giving them tre...
Stem cells rely on instructive cues from their environment. Alterations in microenvironments might c...
SummaryAdult stem cells reside in specialized regulatory microenvironments, or niches, where local s...
In metazoans, tissue maintenance and regeneration depend on adult stem cells, which are characterize...
Adult stem cells reside in specialized regulatory microenvironments, or niches, where local signals ...
Stem cells are fascinating, as they supply the cells that construct our adult bodies and replenish, ...
AbstractEstablishment and maintenance of functional stem cells is critical for organ development and...
Stem cell maintenance is an essential process that is needed to preserve a delicate balance between ...
<div><p>At the apical tip of the <i>Drosophila</i> testis, germline and somatic stem cells surround ...
All multicellular organisms constantly need to replace aged or damaged cells. This vital task of tis...
SummaryThe ability of adult stem cells to maintain their undifferentiated state depends upon residen...
At the apical tip of the Drosophila testis, germline and somatic stem cells surround a cluster of so...
AbstractUnderstanding how stem cells are maintained in their microenvironment (the niche) is vital f...