AbstractMusashi-1, a neural RNA-binding protein, is important for maintaining neural stem cells. Both Musashi-1 and Hes1, a transcriptional factor regulated by Musashi-1, are expressed in the small intestine. Here we show that Musashi-1 is present in a few epithelial cells just above the Paneth cells in the small intestinal crypt, the putative position of stem cells, whereas Hes1 is expressed in lower crypt cells just above the Paneth cells, including Musashi-1-positive cells. Musashi-1 and Hes1 were not expressed in Paneth cells. Notably, Musashi-1 and Hes1 were coexpressed in the crypt base columnar cells located between the Paneth cells. These findings suggest that not only the cells just above Paneth cells but also the crypt base column...
SummaryLGR5 and BMI1 mark intestinal stem cells in crypt base columnar cells and +4 position cells, ...
The intestine is composed of an epithelial layer containing rapidly proliferating cells that mature ...
A key goal of regenerative medicine is an understanding of the genetic factors that define the prope...
AbstractMusashi-1, a neural RNA-binding protein, is important for maintaining neural stem cells. Bot...
In the small intestine, stem cells are considered to exist at the bottom of the crypt. Actively prol...
There are few reliable markers for adult stem cells and none for those of the intestinal epithelium....
Evolutionarily conserved RNA-binding protein Musashi1 (Msi1) can regulate developmentally relevant g...
International audienceThe RNA-binding protein Musashi-1 (Msi1) has been proposed as a marker of inte...
AbstractMusashi-1 is involved in maintenance of neural stem cells. In the rat stomach, we found some...
AbstractIt is thought that small intestinal epithelial stem cell progeny, via Notch signaling, yield...
The conserved Musashi (Msi) family of RNA binding proteins are expressed in stem/progenitor and canc...
Bmi1 plays an essential part in the self-renewal of hematopoietic and neural stem cells. To investig...
AbstractThe cellular composition of barrier epithelia is essential to organismal homoeostasis. In pa...
Several recent studies demonstrated that development, function and remodelling of mammary glands inv...
There are two major stem cell populations in the intestinal crypt region that express either Bmi1 or...
SummaryLGR5 and BMI1 mark intestinal stem cells in crypt base columnar cells and +4 position cells, ...
The intestine is composed of an epithelial layer containing rapidly proliferating cells that mature ...
A key goal of regenerative medicine is an understanding of the genetic factors that define the prope...
AbstractMusashi-1, a neural RNA-binding protein, is important for maintaining neural stem cells. Bot...
In the small intestine, stem cells are considered to exist at the bottom of the crypt. Actively prol...
There are few reliable markers for adult stem cells and none for those of the intestinal epithelium....
Evolutionarily conserved RNA-binding protein Musashi1 (Msi1) can regulate developmentally relevant g...
International audienceThe RNA-binding protein Musashi-1 (Msi1) has been proposed as a marker of inte...
AbstractMusashi-1 is involved in maintenance of neural stem cells. In the rat stomach, we found some...
AbstractIt is thought that small intestinal epithelial stem cell progeny, via Notch signaling, yield...
The conserved Musashi (Msi) family of RNA binding proteins are expressed in stem/progenitor and canc...
Bmi1 plays an essential part in the self-renewal of hematopoietic and neural stem cells. To investig...
AbstractThe cellular composition of barrier epithelia is essential to organismal homoeostasis. In pa...
Several recent studies demonstrated that development, function and remodelling of mammary glands inv...
There are two major stem cell populations in the intestinal crypt region that express either Bmi1 or...
SummaryLGR5 and BMI1 mark intestinal stem cells in crypt base columnar cells and +4 position cells, ...
The intestine is composed of an epithelial layer containing rapidly proliferating cells that mature ...
A key goal of regenerative medicine is an understanding of the genetic factors that define the prope...