Journal of Bone and Mineral Research · 2011 · 109 citations · 60 references
SclerostinDevelopmental BiologyMolecular PhysiologyBone Morphogenic ProteinPannexin FamilyCell SignalingNovel TargetPannexin 3OsteoarthritisCraniofacial DevelopmentMorphogenesisGap Junction ProteinsChordate Channel ProteinsMedicineCell BiologyOsteoporosisCellular PhysiologyExtracellular Matrix
Pannexins are a class of chordate channel proteins identified by their homology to insect gap junction proteins. The pannexin family consists of three members, Panx1, Panx2, and Panx3, and the role each of these proteins plays in cellular processes is still under investigation. Previous reports of Panx3 expression indicate enrichment in skeletal tissues, so we have further investigated this distribution by surveying the developing mouse embryo with immunofluorescence. High levels of Panx3 were detected in intramembranous craniofacial flat bones, as well as long bones of the appendicular and axial skeleton. This distribution is the result of expression in both osteoblasts and hypertrophic chondrocytes. Furthermore, the Panx3 promoter contains putative binding sites for transcription factors involved in bone formation, and we show that the sequence between bases -275 and -283 is responsive to Runx2 activation. Taken together, our data suggests that Panx3 may serve an important role in bone development, and is a novel target for Runx2-dependent signaling.
60
Clustal W and Clustal X version 2.0
Mark Larkin, Gordon Blackshields, Nigel P. Brown et al. · Bioinformatics · 2007 · 28.7K citations · Full text
Sox9 is required for cartilage formation
Weimin Bi, Jian Min Deng, Zhaoping Zhang et al. · Nature Genetics · 1999 · 1.7K citations
Musculoskeletal Research, Developmental Biology, Cartilage Formation +6
The atlas of mouse development
Rosa Beddington · Trends in Genetics · 1993 · 1.4K citations
Knockout Mouse, Developmental Biology, Transgenic Mouse Models +6