Nakamura et al. used expression studies to identify an enrichment of Zfhx4 in cartilage and revealed through global gene knock-down that it is required for proper endochondral ossification in mice. They further demonstrated a physical and genetic interaction between Zfhx4 and Osterix, which is of interest to the field of transcriptional regulation of mammalian endochondral ossification
The axial and appendicular skeleton of vertebrates develops by endochondral ossification, in which s...
Osterix is a bone-related transcription factor that functions genetically downstream of Runx2, which...
Osterix (Osx) is a transcription factor required for osteoblast differentiation and bone formation. ...
AbstractWe have identified a novel zinc finger-containing transcription factor, called Osterix (Osx)...
Endochondral ossification is a complex process involving a series of events that are initiated by th...
The differentiation of embryonic mesenchymal cells into chondrocytes and the subsequent formation of...
gene expression profiles during these processes are essential to obtain a complete understanding of...
Formation of cartilage and bone involves sequential processes in which undifferentiated mesenchyme a...
Hox genes encode transcription factors, which regulate skeletal patterning and chondrocyte different...
The terminal differentiation of hypertrophic chondrocytes is a tightly regulated process that plays ...
Transcription factors SOX9, SOX5 and SOX6 are indispensable for generation and differentiation of ch...
Chondrocyte hypertrophy is essential for endo-chondral bone development. Unexpectedly, we discovered...
AbstractOsteoblast induction and differentiation in developing long bones is dynamically controlled ...
Osteoblast induction and differentiation in developing long bones is dynamically controlled by the o...
SummaryChondrocyte hypertrophy is essential for endochondral bone development. Unexpectedly, we disc...
The axial and appendicular skeleton of vertebrates develops by endochondral ossification, in which s...
Osterix is a bone-related transcription factor that functions genetically downstream of Runx2, which...
Osterix (Osx) is a transcription factor required for osteoblast differentiation and bone formation. ...
AbstractWe have identified a novel zinc finger-containing transcription factor, called Osterix (Osx)...
Endochondral ossification is a complex process involving a series of events that are initiated by th...
The differentiation of embryonic mesenchymal cells into chondrocytes and the subsequent formation of...
gene expression profiles during these processes are essential to obtain a complete understanding of...
Formation of cartilage and bone involves sequential processes in which undifferentiated mesenchyme a...
Hox genes encode transcription factors, which regulate skeletal patterning and chondrocyte different...
The terminal differentiation of hypertrophic chondrocytes is a tightly regulated process that plays ...
Transcription factors SOX9, SOX5 and SOX6 are indispensable for generation and differentiation of ch...
Chondrocyte hypertrophy is essential for endo-chondral bone development. Unexpectedly, we discovered...
AbstractOsteoblast induction and differentiation in developing long bones is dynamically controlled ...
Osteoblast induction and differentiation in developing long bones is dynamically controlled by the o...
SummaryChondrocyte hypertrophy is essential for endochondral bone development. Unexpectedly, we disc...
The axial and appendicular skeleton of vertebrates develops by endochondral ossification, in which s...
Osterix is a bone-related transcription factor that functions genetically downstream of Runx2, which...
Osterix (Osx) is a transcription factor required for osteoblast differentiation and bone formation. ...