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Muriel Rhinn

Showing results (11-20 of 26) with videos related to

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Development (Cambridge, England)|January 27, 2009
Early mouse caudal development relies on crosstalk between retinoic acid, Shh and Fgf signalling pathwaysVanessa Ribes, Isabelle Le Roux, Muriel Rhinn, et al.
Mechanisms of Development|September 10, 2003
Cloning, expression and relationship of zebrafish gbx1 and gbx2 genes to Fgf signalingMuriel Rhinn, Klaus Lun, Angel Amores, et al.
Plos One|May 3, 2013
Transcriptomic analysis of murine embryos lacking endogenous retinoic acid signalingMarie Paschaki, Carole Schneider, Muriel Rhinn, et al.
Nature Communications|March 31, 2016
Essential role of the TFIID subunit TAF4 in murine embryogenesis and embryonic stem cell differentiationDiana Langer, Igor Martianov, Daniel Alpern, et al.
Plos Biology|June 14, 2022
Aberrant induction of p19Arf-mediated cellular senescence contributes to neurodevelopmental defectsMuriel Rhinn, Irene Zapata-Bodalo, Annabelle Klein, et al.
Plos One|January 16, 2014
Dynamic association with donor cell filopodia and lipid-modification are essential features of Wnt8a during patterning of the zebrafish neuroectodermMarta Luz, Stephanie Spannl-Müller, Günes Özhan, et al.
Cell|May 6, 2008
The endosomal protein Appl1 mediates Akt substrate specificity and cell survival in vertebrate developmentAnnette Schenck, Livia Goto-Silva, Claudio Collinet, et al.
Frontiers in Physiology|October 14, 2014
Sox2 acts as a rheostat of epithelial to mesenchymal transition during neural crest developmentNikolaos Mandalos, Muriel Rhinn, Zoraide Granchi, et al.
Plos Genetics|July 23, 2013
FGF signalling regulates chromatin organisation during neural differentiation via mechanisms that can be uncoupled from transcriptionNishal S Patel, Muriel Rhinn, Claudia I Semprich, et al.
Plos Genetics|January 25, 2018
Correction: FGF Signalling Regulates Chromatin Organisation during Neural Differentiation via Mechanisms that Can Be Uncoupled from TranscriptionNishal S Patel, Muriel Rhinn, Claudia I Semprich, et al.
Pageof 3

Showing results (11-20 of 26) with videos related to

Sort By:
Pageof 3
Development (Cambridge, England)|January 27, 2009
Early mouse caudal development relies on crosstalk between retinoic acid, Shh and Fgf signalling pathwaysVanessa Ribes, Isabelle Le Roux, Muriel Rhinn, et al.
Mechanisms of Development|September 10, 2003
Cloning, expression and relationship of zebrafish gbx1 and gbx2 genes to Fgf signalingMuriel Rhinn, Klaus Lun, Angel Amores, et al.
Plos One|May 3, 2013
Transcriptomic analysis of murine embryos lacking endogenous retinoic acid signalingMarie Paschaki, Carole Schneider, Muriel Rhinn, et al.
Nature Communications|March 31, 2016
Essential role of the TFIID subunit TAF4 in murine embryogenesis and embryonic stem cell differentiationDiana Langer, Igor Martianov, Daniel Alpern, et al.
Plos Biology|June 14, 2022
Aberrant induction of p19Arf-mediated cellular senescence contributes to neurodevelopmental defectsMuriel Rhinn, Irene Zapata-Bodalo, Annabelle Klein, et al.
Plos One|January 16, 2014
Dynamic association with donor cell filopodia and lipid-modification are essential features of Wnt8a during patterning of the zebrafish neuroectodermMarta Luz, Stephanie Spannl-Müller, Günes Özhan, et al.
Cell|May 6, 2008
The endosomal protein Appl1 mediates Akt substrate specificity and cell survival in vertebrate developmentAnnette Schenck, Livia Goto-Silva, Claudio Collinet, et al.
Frontiers in Physiology|October 14, 2014
Sox2 acts as a rheostat of epithelial to mesenchymal transition during neural crest developmentNikolaos Mandalos, Muriel Rhinn, Zoraide Granchi, et al.
Plos Genetics|July 23, 2013
FGF signalling regulates chromatin organisation during neural differentiation via mechanisms that can be uncoupled from transcriptionNishal S Patel, Muriel Rhinn, Claudia I Semprich, et al.
Plos Genetics|January 25, 2018
Correction: FGF Signalling Regulates Chromatin Organisation during Neural Differentiation via Mechanisms that Can Be Uncoupled from TranscriptionNishal S Patel, Muriel Rhinn, Claudia I Semprich, et al.
Pageof 3