The Snail family of transcriptional regulators consists of three highly conserved members. These proteins regulate (repress) transcription via the recruitment of histone deacetylases to target gene promoters that possess the appropriate E-box binding sequences. Murine Snai1 is required for mouse development while Snai2 deficient animals survive with some anomalies. Less is known about the third member of the family, Snai3. To investigate the function of Snai3, we generated a conditional knockin mouse. Utilizing Cre-mediated deletion to facilitate the ablation of Snai3 in T cells or the entire animal, we found little to no effect of the loss of Snai3 in the entire animal or in T cell lineages. This finding provided the hypothesis that absenc...
Epithelial stem cells from a variety of tissues have been shown to express genes linked to mesenchym...
Snail family members regulate epithelial-to-mesenchymal transition (EMT) during invasion of intestin...
9 páginas, 5 figuras.-- et al.Snai2-deficient cells are radiosensitive to DNA damage. The function o...
The Snail family of transcriptional regulators consists of three highly conserved members. These pro...
<div><p>The Snail family of transcriptional regulators consists of three highly conserved members. T...
The Snail gene family encodes zinc finger-containing transcriptional repressor proteins. Three membe...
The Snail gene family encodes zinc finger-containing transcriptional repressor proteins. Three membe...
Snail transcription factors are key regulators of cellular transitions during embryonic development ...
The Snail gene family encodes DNA-binding zinc finger proteins that function as transcriptional repr...
Two Snail family genes, Snai1 and Snai2, encode E2 box-binding transcriptional repressors that are i...
Originally identified as one of two zygotically expressed genes required for gastrulation in Drosoph...
Members of the Snail gene superfamily, which encode zinc finger transcriptional repressors, play cri...
Endochondral bone formation is a multistep process during which a cartilage primordium is replaced b...
AbstractEpithelial stem cells from a variety of tissues have been shown to express genes linked to m...
Breast cancer is a major cause of mortality in women. The transcription factor SNAI2 has been implic...
Epithelial stem cells from a variety of tissues have been shown to express genes linked to mesenchym...
Snail family members regulate epithelial-to-mesenchymal transition (EMT) during invasion of intestin...
9 páginas, 5 figuras.-- et al.Snai2-deficient cells are radiosensitive to DNA damage. The function o...
The Snail family of transcriptional regulators consists of three highly conserved members. These pro...
<div><p>The Snail family of transcriptional regulators consists of three highly conserved members. T...
The Snail gene family encodes zinc finger-containing transcriptional repressor proteins. Three membe...
The Snail gene family encodes zinc finger-containing transcriptional repressor proteins. Three membe...
Snail transcription factors are key regulators of cellular transitions during embryonic development ...
The Snail gene family encodes DNA-binding zinc finger proteins that function as transcriptional repr...
Two Snail family genes, Snai1 and Snai2, encode E2 box-binding transcriptional repressors that are i...
Originally identified as one of two zygotically expressed genes required for gastrulation in Drosoph...
Members of the Snail gene superfamily, which encode zinc finger transcriptional repressors, play cri...
Endochondral bone formation is a multistep process during which a cartilage primordium is replaced b...
AbstractEpithelial stem cells from a variety of tissues have been shown to express genes linked to m...
Breast cancer is a major cause of mortality in women. The transcription factor SNAI2 has been implic...
Epithelial stem cells from a variety of tissues have been shown to express genes linked to mesenchym...
Snail family members regulate epithelial-to-mesenchymal transition (EMT) during invasion of intestin...
9 páginas, 5 figuras.-- et al.Snai2-deficient cells are radiosensitive to DNA damage. The function o...