TY - JOUR
T1 - Fosl1 controls the assembly of endothelial cells into capillary tubes by direct repression of αv and β3 integrin transcription
AU - Evellin, Sandrine
AU - Galvagni, Federico
AU - Zippo, Alessio
AU - Neri, Francesco
AU - Orlandini, Maurizio O.
AU - Incarnato, Danny
AU - Dettori, Daniela
AU - Neubauer, Stefanie
AU - Kessler, Horst
AU - Wagne, Erwin F.
AU - Oliviero, Salvatore
PY - 2013/3
Y1 - 2013/3
N2 - To form three-dimensional capillary tubes, endothelial cells must establish contacts with the extracellular matrix that provides signals for their proliferation, migration, and differentiation. The transcription factor Fosl1-/- plays a key role in the vasculogenic and angiogenic processes as Fosl1 knockout embryos die with vascular defects in extraembryonic tissues. Here, we show that Fosl1 embryonic stem cells differentiate into endothelial cells but fail to correctly assemble into primitive capillaries and to form tube-like structures. FOSL1 silencing affects in vitro angiogenesis, increases cell adhesion, and decreases cell mobility of primary human endothelial cells (HUVEC). We further show that FOSL1 is a repressor of αv and β3 integrin expression and that the down-modulation of αvβ3 rescues the angiogenic phenotype in FOSL1-silenced HUVEC, while the ectopic expression of αvβ3 alone reproduces the phenotypic alterations induced by FOSL1 knockdown. FOSL1 represses the transcription of both αv and β3 integrin genes by binding together with JunD to their proximal promoter via the transcription factor SP1. These data suggest that FOSL1-dependent negative regulation of αvβ3 expression on endothelial cells is required for endothelial assembly into vessel structures.
AB - To form three-dimensional capillary tubes, endothelial cells must establish contacts with the extracellular matrix that provides signals for their proliferation, migration, and differentiation. The transcription factor Fosl1-/- plays a key role in the vasculogenic and angiogenic processes as Fosl1 knockout embryos die with vascular defects in extraembryonic tissues. Here, we show that Fosl1 embryonic stem cells differentiate into endothelial cells but fail to correctly assemble into primitive capillaries and to form tube-like structures. FOSL1 silencing affects in vitro angiogenesis, increases cell adhesion, and decreases cell mobility of primary human endothelial cells (HUVEC). We further show that FOSL1 is a repressor of αv and β3 integrin expression and that the down-modulation of αvβ3 rescues the angiogenic phenotype in FOSL1-silenced HUVEC, while the ectopic expression of αvβ3 alone reproduces the phenotypic alterations induced by FOSL1 knockdown. FOSL1 represses the transcription of both αv and β3 integrin genes by binding together with JunD to their proximal promoter via the transcription factor SP1. These data suggest that FOSL1-dependent negative regulation of αvβ3 expression on endothelial cells is required for endothelial assembly into vessel structures.
UR - http://www.scopus.com/inward/record.url?scp=84874747647&partnerID=8YFLogxK
U2 - 10.1128/MCB.01054-12
DO - 10.1128/MCB.01054-12
M3 - Article
C2 - 23319049
AN - SCOPUS:84874747647
SN - 0270-7306
VL - 33
SP - 1188
EP - 1197
JO - Molecular and Cellular Biology
JF - Molecular and Cellular Biology
IS - 6
ER -