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Gastroenterology
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February 27, 2007
The Intestinal Wnt/TCF Signature
Laurens G Van der Flier, Jacob Sabates-Bellver, Irma Oving, et al.
Plos Biology
|
November 25, 2010
The leukemia-associated Mllt10/Af10-Dot1l are Tcf4/β-catenin coactivators essential for intestinal homeostasis
Tokameh Mahmoudi, Sylvia F Boj, Pantelis Hatzis, et al.
Development (Cambridge, England)
|
August 5, 2020
Erk and MAPK signaling is essential for intestinal development through Wnt pathway modulation
Gaigai Wei, Na Gao, Jiwei Chen, et al.
Proceedings of the National Academy of Sciences of the United States of America
|
August 11, 2010
TCF4 and CDX2, major transcription factors for intestinal function, converge on the same cis-regulatory regions
Michael P Verzi, Pantelis Hatzis, Rita Sulahian, et al.
Proceedings of the National Academy of Sciences of the United States of America
|
December 18, 2019
Enteroendocrine and tuft cells support Lgr5 stem cells on Paneth cell depletion
Johan H van Es, Kay Wiebrands, Carmen López-Iglesias, et al.
Genes & Development
|
June 17, 2004
Loss of Apc in vivo immediately perturbs Wnt signaling, differentiation, and migration
Owen J Sansom, Karen R Reed, Anthony J Hayes, et al.
Proceedings of the National Academy of Sciences of the United States of America
|
May 1, 2023
PGE<sub>2</sub> alters chromatin through H2A.Z-variant enhancer nucleosome modification to promote hematopoietic stem cell fate
Audrey Sporrij, Avik Choudhuri, Meera Prasad, et al.
Communications Biology
|
January 13, 2026
Fetal reversion from diverse lineages sustains the intestinal stem cell pool and confers stress resilience
Sakura Kirino, Fumiya Uefune, Kensuke Miyake, et al.
Cell
|
June 12, 2012
Wnt signaling through inhibition of β-catenin degradation in an intact Axin1 complex
Vivian S W Li, Ser Sue Ng, Paul J Boersema, et al.
Molecular Therapy. Methods & Clinical Development
|
February 16, 2019
Novel Chimeric Gene Therapy Vectors Based on Adeno-Associated Virus and Four Different Mammalian Bocaviruses
Julia Fakhiri, Marc A Schneider, Jens Puschhof, et al.
Page
of 69
Search research articles
Search
Showing results (421-430 of 688) with videos related to
Sort By:
Page
of 69
Gastroenterology
|
February 27, 2007
The Intestinal Wnt/TCF Signature
Laurens G Van der Flier, Jacob Sabates-Bellver, Irma Oving, et al.
Plos Biology
|
November 25, 2010
The leukemia-associated Mllt10/Af10-Dot1l are Tcf4/β-catenin coactivators essential for intestinal homeostasis
Tokameh Mahmoudi, Sylvia F Boj, Pantelis Hatzis, et al.
Development (Cambridge, England)
|
August 5, 2020
Erk and MAPK signaling is essential for intestinal development through Wnt pathway modulation
Gaigai Wei, Na Gao, Jiwei Chen, et al.
Proceedings of the National Academy of Sciences of the United States of America
|
August 11, 2010
TCF4 and CDX2, major transcription factors for intestinal function, converge on the same cis-regulatory regions
Michael P Verzi, Pantelis Hatzis, Rita Sulahian, et al.
Proceedings of the National Academy of Sciences of the United States of America
|
December 18, 2019
Enteroendocrine and tuft cells support Lgr5 stem cells on Paneth cell depletion
Johan H van Es, Kay Wiebrands, Carmen López-Iglesias, et al.
Genes & Development
|
June 17, 2004
Loss of Apc in vivo immediately perturbs Wnt signaling, differentiation, and migration
Owen J Sansom, Karen R Reed, Anthony J Hayes, et al.
Proceedings of the National Academy of Sciences of the United States of America
|
May 1, 2023
PGE<sub>2</sub> alters chromatin through H2A.Z-variant enhancer nucleosome modification to promote hematopoietic stem cell fate
Audrey Sporrij, Avik Choudhuri, Meera Prasad, et al.
Communications Biology
|
January 13, 2026
Fetal reversion from diverse lineages sustains the intestinal stem cell pool and confers stress resilience
Sakura Kirino, Fumiya Uefune, Kensuke Miyake, et al.
Cell
|
June 12, 2012
Wnt signaling through inhibition of β-catenin degradation in an intact Axin1 complex
Vivian S W Li, Ser Sue Ng, Paul J Boersema, et al.
Molecular Therapy. Methods & Clinical Development
|
February 16, 2019
Novel Chimeric Gene Therapy Vectors Based on Adeno-Associated Virus and Four Different Mammalian Bocaviruses
Julia Fakhiri, Marc A Schneider, Jens Puschhof, et al.
Page
of 69