Jun is a highly conserved member of the multimeric activator protein 1 transcription factor complex and plays an important role in human cancer where it is known to be critical for proliferation, cell cycle regulation, differentiation, and cell death. All of these biological functions are also crucial for embryonic development. Although all Jun null mouse embryos die at mid-gestation with persistent truncus arteriosus, a severe cardiac outflow tract defect also seen in human congenital heart disease, the developmental mechanisms are poorly understood. Here we show that murine Jun is expressed in a restricted pattern in several cell populations important for cardiovascular development, including the second heart field, pharyngeal endoderm, o...
The right ventricle and outflow tract of the developing heart are derived from mesodermal progenitor...
Labeling experiments in chicken and mouse embryos have revealed important roles for different cell l...
SummaryCardiogenesis requires the generation of endothelial, cardiac, and smooth muscle cells, thoug...
<div><p>Jun is a highly conserved member of the multimeric activator protein 1 transcription factor ...
<p>Compared to control embryos (<b>A, A', C–E, I–L</b>), the loss of <i>Jun</i> in <i>Isl1</i>-expre...
Abstract Background Morbidity and mortality associated with cardiovascular diseases, such as myocard...
<p>Saggital sections of E10.5 <i>Isl1</i><sup>Cre/+</sup><i>; mT/mG; Jun</i><sup>flox/+</sup> (<b>A<...
International audienceBACKGROUND: The Jun family of activator protein 1 (AP-1) transcription factors...
<p>Transverse sections of X-gal stained <i>Jun</i><sup>+/−</sup><i>; Tie2-Cre;R26R</i> (<b>A, B</b>)...
<p>Compared to control embryos (<b>B, D</b>), the loss of <i>Jun</i> in <i>Tie2</i>-expressing precu...
2011-08-09Congenital cardiovascular disease is the number one birth defect causing deaths in the fir...
AbstractHearts of mice lacking Isl1, a LIM homeodomain transcription factor, are completely missing ...
<p>Sagittal sections of E10.5 mutant (<b>B, D, G</b>) and control (<b>A, C, F</b>) embryos analyzed ...
The generation and expansion of diverse cardiovascular cell lineages is a critical step during human...
AbstractThe formation of intricately organized aortic and pulmonic valves from primitive endocardial...
The right ventricle and outflow tract of the developing heart are derived from mesodermal progenitor...
Labeling experiments in chicken and mouse embryos have revealed important roles for different cell l...
SummaryCardiogenesis requires the generation of endothelial, cardiac, and smooth muscle cells, thoug...
<div><p>Jun is a highly conserved member of the multimeric activator protein 1 transcription factor ...
<p>Compared to control embryos (<b>A, A', C–E, I–L</b>), the loss of <i>Jun</i> in <i>Isl1</i>-expre...
Abstract Background Morbidity and mortality associated with cardiovascular diseases, such as myocard...
<p>Saggital sections of E10.5 <i>Isl1</i><sup>Cre/+</sup><i>; mT/mG; Jun</i><sup>flox/+</sup> (<b>A<...
International audienceBACKGROUND: The Jun family of activator protein 1 (AP-1) transcription factors...
<p>Transverse sections of X-gal stained <i>Jun</i><sup>+/−</sup><i>; Tie2-Cre;R26R</i> (<b>A, B</b>)...
<p>Compared to control embryos (<b>B, D</b>), the loss of <i>Jun</i> in <i>Tie2</i>-expressing precu...
2011-08-09Congenital cardiovascular disease is the number one birth defect causing deaths in the fir...
AbstractHearts of mice lacking Isl1, a LIM homeodomain transcription factor, are completely missing ...
<p>Sagittal sections of E10.5 mutant (<b>B, D, G</b>) and control (<b>A, C, F</b>) embryos analyzed ...
The generation and expansion of diverse cardiovascular cell lineages is a critical step during human...
AbstractThe formation of intricately organized aortic and pulmonic valves from primitive endocardial...
The right ventricle and outflow tract of the developing heart are derived from mesodermal progenitor...
Labeling experiments in chicken and mouse embryos have revealed important roles for different cell l...
SummaryCardiogenesis requires the generation of endothelial, cardiac, and smooth muscle cells, thoug...