Sox9 is a master transcription factor in chondrocyte differentiation. Several lines of evidence suggest that the p38 mitogen-activated protein kinase (MAPK) pathway is involved in chondrocyte differentiation. In the present study, we examined the roles of p38 in the regulation of SOX9 activity and chondrogenesis. ^ COS7 cells were transfected with a SOX9 expression vector and 4x48-p89, a luciferase construction harboring four tandem copies of a SOX9-dependent 48-bp enhancer in Col2a1. Coexpression of MKK6EE, a constitutively active mutant of MKK6, a MAPKK that specifically activates p38, further increased the activity of the SOX9-dependent 48-bp enhancer about 5-fold, and SOX9 protein levels were not increased under these conditions. This...
SummaryObjectiveThe transcription factor SOX9 has been shown to be linked to chondrocyte differentia...
Chondrocyte differentiation is the fundamental process in skeletal development. From the mesenchymal...
Induced pluripotent stem cells (iPSCs) are an attractive cell source for cartilage regeneration, but...
Sox9 is a master transcription factor in chondrocyte differentiation. Several lines of evidence sugg...
Sox9 is a transcription factor required for chondrocyte differentiation and cartilage formation. In ...
Sox9 is a Sry-related HMG-domain containing transcription factor. Lines of evidence suggest that Sox...
Sox9, (SRY-type HMG box), has been shown to play a critical role throughout chondrogenesis. Haploin...
AbstractObjective: The Sox9 transcription factor has emerged as an important determinant of chondroc...
Our previous work has provided strong evidence that the transcription factor SOX9 is completely need...
Bone fOlmation is an exquisitely coordinated process involving both chondrogenic and osteogenic diff...
Bone morphogenetic protein 2 (BMP2) is one of the key chondrogenic growth factors involved in the ca...
Bone morphogenetic protein 2 (BMP2) is one of the key chondrogenic growth factors involved in the ca...
SummarySox9 encodes an essential transcriptional regulator of chondrocyte specification and differen...
Chondrogenic polypeptide growth factors influence articular chondrocyte functions that are required ...
Sox9 encodes an essential transcriptional regulator of chondrocyte specification and differentiation...
SummaryObjectiveThe transcription factor SOX9 has been shown to be linked to chondrocyte differentia...
Chondrocyte differentiation is the fundamental process in skeletal development. From the mesenchymal...
Induced pluripotent stem cells (iPSCs) are an attractive cell source for cartilage regeneration, but...
Sox9 is a master transcription factor in chondrocyte differentiation. Several lines of evidence sugg...
Sox9 is a transcription factor required for chondrocyte differentiation and cartilage formation. In ...
Sox9 is a Sry-related HMG-domain containing transcription factor. Lines of evidence suggest that Sox...
Sox9, (SRY-type HMG box), has been shown to play a critical role throughout chondrogenesis. Haploin...
AbstractObjective: The Sox9 transcription factor has emerged as an important determinant of chondroc...
Our previous work has provided strong evidence that the transcription factor SOX9 is completely need...
Bone fOlmation is an exquisitely coordinated process involving both chondrogenic and osteogenic diff...
Bone morphogenetic protein 2 (BMP2) is one of the key chondrogenic growth factors involved in the ca...
Bone morphogenetic protein 2 (BMP2) is one of the key chondrogenic growth factors involved in the ca...
SummarySox9 encodes an essential transcriptional regulator of chondrocyte specification and differen...
Chondrogenic polypeptide growth factors influence articular chondrocyte functions that are required ...
Sox9 encodes an essential transcriptional regulator of chondrocyte specification and differentiation...
SummaryObjectiveThe transcription factor SOX9 has been shown to be linked to chondrocyte differentia...
Chondrocyte differentiation is the fundamental process in skeletal development. From the mesenchymal...
Induced pluripotent stem cells (iPSCs) are an attractive cell source for cartilage regeneration, but...