Preservation of the epithelial state involves the stable repression of epithelial-to-mesenchymal transition program, whereas maintenance of the stem compartment requires the inhibition of differentiation processes. A simple and direct molecular mini-circuitry between master elements of these biological processes might provide the best device to keep balanced such complex phenomena. In this work, we show that in hepatic stem cell Snail, a transcriptional repressor of the hepatocyte differentiation master gene HNF4α, directly represses the expression of the epithelial microRNAs (miRs)-200c and-34a, which in turn target several stem cell genes. Notably, in differentiated hepatocytes HNF4α, previously identified as a transcriptional repressor...
During gastrulation, epiblast cells undergo an epithelial-to-mesenchymal transition: EMT) as they in...
During gastrulation, epiblast cells undergo an epithelial-to-mesenchymal transition: EMT) as they in...
UNLABELLED: The concept that cellular terminal differentiation is stably maintained once development...
International audiencePreservation of the epithelial state involves the stable repression of epithel...
International audiencePreservation of the epithelial state involves the stable repression of epithel...
The concept that cellular terminal differentiation is stably maintained once development is complete...
The concept that cellular terminal differentiation is stably maintained once development is complete...
The concept that cellular terminal differentiation is stably maintained once development is complete...
International audienceThe complex spatial and paracrine relationships between the various liver hist...
The complex spatial and paracrine relationships between the various liver histotypes are essential f...
International audienceThe complex spatial and paracrine relationships between the various liver hist...
A lncRNA-mediated interaction between Snail and Ezh2 governs epigenetic modifications causal to EMT ...
Epithelial-to-mesenchymal transition (EMT) is a coordinated process, occurring both during morphogen...
Epithelial-to-mesenchymal transition (EMT) is a coordinated process, occurring both during morphogen...
BACKGROUND & AIMS: Hepatocyte differentiation is controlled by liver-enriched transcription factors ...
During gastrulation, epiblast cells undergo an epithelial-to-mesenchymal transition: EMT) as they in...
During gastrulation, epiblast cells undergo an epithelial-to-mesenchymal transition: EMT) as they in...
UNLABELLED: The concept that cellular terminal differentiation is stably maintained once development...
International audiencePreservation of the epithelial state involves the stable repression of epithel...
International audiencePreservation of the epithelial state involves the stable repression of epithel...
The concept that cellular terminal differentiation is stably maintained once development is complete...
The concept that cellular terminal differentiation is stably maintained once development is complete...
The concept that cellular terminal differentiation is stably maintained once development is complete...
International audienceThe complex spatial and paracrine relationships between the various liver hist...
The complex spatial and paracrine relationships between the various liver histotypes are essential f...
International audienceThe complex spatial and paracrine relationships between the various liver hist...
A lncRNA-mediated interaction between Snail and Ezh2 governs epigenetic modifications causal to EMT ...
Epithelial-to-mesenchymal transition (EMT) is a coordinated process, occurring both during morphogen...
Epithelial-to-mesenchymal transition (EMT) is a coordinated process, occurring both during morphogen...
BACKGROUND & AIMS: Hepatocyte differentiation is controlled by liver-enriched transcription factors ...
During gastrulation, epiblast cells undergo an epithelial-to-mesenchymal transition: EMT) as they in...
During gastrulation, epiblast cells undergo an epithelial-to-mesenchymal transition: EMT) as they in...
UNLABELLED: The concept that cellular terminal differentiation is stably maintained once development...