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Sci Rep ; 5: 11742, 2015 Jul 07.
Article de Anglais | MEDLINE | ID: mdl-26148697

RÉSUMÉ

The protein kinase D isoenzymes PKD1/2/3 are prominent downstream targets of PKCs (Protein Kinase Cs) and phospholipase D in various biological systems. Recently, we identified PKD isoforms as novel mediators of tumour cell-endothelial cell communication, tumour cell motility and metastasis. Although PKD isoforms have been implicated in physiological/tumour angiogenesis, a role of PKDs during embryonic development, vasculogenesis and angiogenesis still remains elusive. We investigated the role of PKDs in germ layer segregation and subsequent vasculogenesis and angiogenesis using mouse embryonic stem cells (ESCs). We show that mouse ESCs predominantly express PKD2 followed by PKD3 while PKD1 displays negligible levels. Furthermore, we demonstrate that PKD2 is specifically phosphorylated/activated at the time of germ layer segregation. Time-restricted PKD2-activation limits mesendoderm formation and subsequent cardiovasculogenesis during early differentiation while leading to branching angiogenesis during late differentiation. In line, PKD2 loss-of-function analyses showed induction of mesendodermal differentiation in expense of the neuroectodermal germ layer. Our in vivo findings demonstrate that embryoid bodies transplanted on chicken chorioallantoic membrane induced an angiogenic response indicating that timed overexpression of PKD2 from day 4 onwards leads to augmented angiogenesis in differentiating ESCs. Taken together, our results describe novel and time-dependent facets of PKD2 during early cell fate determination.


Sujet(s)
Cellules souches embryonnaires de souris/métabolisme , Protein kinases/métabolisme , Animaux , Différenciation cellulaire/effets des médicaments et des substances chimiques , Lignée cellulaire , Poulets , Chorioallantoïde/vascularisation , Doxycycline/pharmacologie , Corps embryoïdes/cytologie , Corps embryoïdes/transplantation , Techniques de knock-in de gènes , Immunohistochimie , Cellules souches pluripotentes induites/cytologie , Cellules souches pluripotentes induites/métabolisme , Souris , Souris de lignée C57BL , Cellules souches embryonnaires de souris/cytologie , Néovascularisation pathologique , Protéine kinase C/génétique , Protéine kinase C/métabolisme , Protein kinase D2 , Protein kinases/génétique , Réaction de polymérisation en chaine en temps réel
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