The conserved Musashi (Msi) family of RNA binding proteins are expressed in stem/progenitor and cancer cells, but generally absent from differentiated cells, consistent with a role in cell state regulation. We found that Msi genes are rarely mutated but frequently overexpressed in human cancers and are associated with an epithelial-luminal cell state. Using ribosome profiling and RNA-seq analysis, we found that Msi proteins regulate translation of genes implicated in epithelial cell biology and epithelial-to-mesenchymal transition (EMT), and promote an epithelial splicing pattern. Overexpression of Msi proteins inhibited the translation of Jagged1, a factor required for EMT, and repressed EMT in cell culture and in mammary gland in vivo. Kn...
<div><p>Recent studies have shown that the RNA binding protein Musashi 2 (Msi2) plays important role...
The Musashi family of RNA binding proteins act to promote stem cell self-renewal and oppose cell dif...
We previously identified a gene signature predicted to regulate the epithelial-mesenchymal transitio...
Evolutionarily conserved RNA-binding protein Musashi1 (Msi1) can regulate developmentally relevant g...
The Musashi (Msi) family of RNA-binding proteins is post-transcriptional regulators of gene expressi...
The Musashi family is an evolutionarily conserved group of RNA-binding proteins. In mammal, two memb...
Musashi1 (Msi1) is a highly conserved RNA-binding protein that is required during the development of...
Gene expression and metabolism are coupled at numerous levels. Cells must sense and respond to nutri...
International audienceThe RNA-binding protein Musashi-1 (Msi1) has been proposed as a marker of inte...
The therapeutic potential of Musashi (MSI) RNA-binding proteins, important stemness-associated gene ...
available in PMC 2011 May 10.RNA-binding proteins of the Musashi (Msi) family are expressed in stem ...
Musashi1 (Msi1) is an evolutionarily conserved RNA-binding protein (RBP) that has profound implicati...
The evolutionarily conserved RNA-binding protein, Musashi, regulates neural stem cell self-renewal. ...
In ovarian cancer, therapy resistance mechanisms complicate cancer cell eradication. Targeting Musas...
Hematopoietic stem cells (HSCs) are maintained through the regulation of symmetric and asymmetric ce...
<div><p>Recent studies have shown that the RNA binding protein Musashi 2 (Msi2) plays important role...
The Musashi family of RNA binding proteins act to promote stem cell self-renewal and oppose cell dif...
We previously identified a gene signature predicted to regulate the epithelial-mesenchymal transitio...
Evolutionarily conserved RNA-binding protein Musashi1 (Msi1) can regulate developmentally relevant g...
The Musashi (Msi) family of RNA-binding proteins is post-transcriptional regulators of gene expressi...
The Musashi family is an evolutionarily conserved group of RNA-binding proteins. In mammal, two memb...
Musashi1 (Msi1) is a highly conserved RNA-binding protein that is required during the development of...
Gene expression and metabolism are coupled at numerous levels. Cells must sense and respond to nutri...
International audienceThe RNA-binding protein Musashi-1 (Msi1) has been proposed as a marker of inte...
The therapeutic potential of Musashi (MSI) RNA-binding proteins, important stemness-associated gene ...
available in PMC 2011 May 10.RNA-binding proteins of the Musashi (Msi) family are expressed in stem ...
Musashi1 (Msi1) is an evolutionarily conserved RNA-binding protein (RBP) that has profound implicati...
The evolutionarily conserved RNA-binding protein, Musashi, regulates neural stem cell self-renewal. ...
In ovarian cancer, therapy resistance mechanisms complicate cancer cell eradication. Targeting Musas...
Hematopoietic stem cells (HSCs) are maintained through the regulation of symmetric and asymmetric ce...
<div><p>Recent studies have shown that the RNA binding protein Musashi 2 (Msi2) plays important role...
The Musashi family of RNA binding proteins act to promote stem cell self-renewal and oppose cell dif...
We previously identified a gene signature predicted to regulate the epithelial-mesenchymal transitio...