AbstractCraniofacial bones derive from cephalic neural crest, by endochondral or intramembranous ossification. Here, we address the role of the homeobox transcription factor Dlx5 during the initial steps of calvaria membranous differentiation and we show that Dlx5 elicits Runx2 induction and full osteoblast differentiation in embryonic suture mesenchyme grown “in vitro”. First, we compare Dlx5 expression to bone-related gene expression in the developing skull and mandibular bones. We classify genes into three groups related to consecutive steps of ossification. Secondly, we study Dlx5 activity in osteoblast precursors, by transfecting Dlx5 into skull mesenchyme dissected prior to the onset of either Dlx5 and Runx2 expression or osteogenesis...
Mesenchymal stem cells (MSCs) differentiate into multiple lineages and are a promising source of cel...
International audienceBone development is a complex process in which several cell types interact, pr...
Bone morphogenetic proteins (BMPs) are potent osteogenic factors that stimulate osteoblast different...
AbstractCraniofacial bones derive from cephalic neural crest, by endochondral or intramembranous oss...
AbstractThe vertebrate skull vault forms almost entirely by the direct mineralisation of mesenchyme,...
AbstractOur laboratory and others have shown that overexpression of Dlx5 stimulates osteoblast diffe...
Giovanni Levi and Marie-Christine de Vernejoul are co-senior authors.International audienceThe homeo...
Two homeotic genes, Dlx and Msx, appear to regulate development of mineralized tissues, including bo...
Our laboratory and others have shown that overexpression of Dlx5 stimulates osteoblast differentiati...
The Dlx5 gene encodes a DNA-binding homeobox protein, which acts as a transcription factor and is ex...
Genetic approaches have been undertaken to investigate how overexpression or loss of Dlx5 expression...
Genetic studies show that Msx2 and Dlx5 homeodomain (HD) proteins support skeletal development, but ...
Calvarial bone is formed by the intramembranous bone-forming process, which involves many signaling ...
Several homeodomain (HD) proteins are critical for skeletal patterning and respond directly to BMP2 ...
Endochondral ossification, in which cartilaginous templates are progressively replaced by marrow and...
Mesenchymal stem cells (MSCs) differentiate into multiple lineages and are a promising source of cel...
International audienceBone development is a complex process in which several cell types interact, pr...
Bone morphogenetic proteins (BMPs) are potent osteogenic factors that stimulate osteoblast different...
AbstractCraniofacial bones derive from cephalic neural crest, by endochondral or intramembranous oss...
AbstractThe vertebrate skull vault forms almost entirely by the direct mineralisation of mesenchyme,...
AbstractOur laboratory and others have shown that overexpression of Dlx5 stimulates osteoblast diffe...
Giovanni Levi and Marie-Christine de Vernejoul are co-senior authors.International audienceThe homeo...
Two homeotic genes, Dlx and Msx, appear to regulate development of mineralized tissues, including bo...
Our laboratory and others have shown that overexpression of Dlx5 stimulates osteoblast differentiati...
The Dlx5 gene encodes a DNA-binding homeobox protein, which acts as a transcription factor and is ex...
Genetic approaches have been undertaken to investigate how overexpression or loss of Dlx5 expression...
Genetic studies show that Msx2 and Dlx5 homeodomain (HD) proteins support skeletal development, but ...
Calvarial bone is formed by the intramembranous bone-forming process, which involves many signaling ...
Several homeodomain (HD) proteins are critical for skeletal patterning and respond directly to BMP2 ...
Endochondral ossification, in which cartilaginous templates are progressively replaced by marrow and...
Mesenchymal stem cells (MSCs) differentiate into multiple lineages and are a promising source of cel...
International audienceBone development is a complex process in which several cell types interact, pr...
Bone morphogenetic proteins (BMPs) are potent osteogenic factors that stimulate osteoblast different...