AbstractAdaptation to low oxygen tension (hypoxia) is a critical event during development. The transcription factors Hypoxia Inducible Factor-1α (HIF-1α) and HIF-2α are essential mediators of the homeostatic responses that allow hypoxic cells to survive and differentiate. Von Hippel–Lindau protein (VHL) is the E3 ubiquitin ligase that targets HIFs to the proteasome for degradation in normoxia. We have previously demonstrated that the transcription factor HIF-1α is essential for survival and differentiation of growth plate chondrocytes, whereas HIF-2α is not necessary for fetal growth plate development. We have also shown that VHL is important for endochondral bone development, since loss of VHL in chondrocytes causes severe dwarfism. In thi...
Adaptation to hypoxia is a critical cellular event both in pathological settings, such as cancer and...
Pathologic extraskeletal bone formation, or heterotopic ossification (HO), occurs following mechanic...
SummaryChondrocyte hypertrophy is essential for endochondral bone development. Unexpectedly, we disc...
Adaptation to low oxygen tension (hypoxia) is a critical event during development. The transcription...
AbstractAdaptation to low oxygen tension (hypoxia) is a critical event during development. The trans...
Tissue oxygen (O2) levels vary during development and disease; adaptations to decreased O2 (hypoxia)...
Tissue oxygen (O2) levels vary during development and disease; adaptations to decreased O2 (hypoxia)...
<div><p>The hypoxia-inducible factors (HIFs), HIF-1α and HIF-2α, are the central mediators of the ho...
SummaryObjectiveTo investigate the role of Vhl in maintaining the integrity of articular cartilage a...
Cartilage is an essential skeletal connective tissue in vertebrates. It comprises extracellular mat...
International audienceThe hypoxia-inducible factor (Hif)-1α (Hif-1α) and Hif-2α (Epas1) have a criti...
The hypoxia-inducible factor (Hif)-1\u3b1 (Hif-1\u3b1) and Hif-2\u3b1 (Epas1) have a critical role i...
The hypoxia-inducible factor (Hif)-1α (Hif-1α) and Hif-2α (Epas1) have a critical role in both norma...
Growth plate chondrocytes exist in a hypoxic environment where it is recognized that hypoxia-inducib...
Hypoxia-inducible factors (HIFs) are the master regulators of hypoxia-responsive genes. They play a ...
Adaptation to hypoxia is a critical cellular event both in pathological settings, such as cancer and...
Pathologic extraskeletal bone formation, or heterotopic ossification (HO), occurs following mechanic...
SummaryChondrocyte hypertrophy is essential for endochondral bone development. Unexpectedly, we disc...
Adaptation to low oxygen tension (hypoxia) is a critical event during development. The transcription...
AbstractAdaptation to low oxygen tension (hypoxia) is a critical event during development. The trans...
Tissue oxygen (O2) levels vary during development and disease; adaptations to decreased O2 (hypoxia)...
Tissue oxygen (O2) levels vary during development and disease; adaptations to decreased O2 (hypoxia)...
<div><p>The hypoxia-inducible factors (HIFs), HIF-1α and HIF-2α, are the central mediators of the ho...
SummaryObjectiveTo investigate the role of Vhl in maintaining the integrity of articular cartilage a...
Cartilage is an essential skeletal connective tissue in vertebrates. It comprises extracellular mat...
International audienceThe hypoxia-inducible factor (Hif)-1α (Hif-1α) and Hif-2α (Epas1) have a criti...
The hypoxia-inducible factor (Hif)-1\u3b1 (Hif-1\u3b1) and Hif-2\u3b1 (Epas1) have a critical role i...
The hypoxia-inducible factor (Hif)-1α (Hif-1α) and Hif-2α (Epas1) have a critical role in both norma...
Growth plate chondrocytes exist in a hypoxic environment where it is recognized that hypoxia-inducib...
Hypoxia-inducible factors (HIFs) are the master regulators of hypoxia-responsive genes. They play a ...
Adaptation to hypoxia is a critical cellular event both in pathological settings, such as cancer and...
Pathologic extraskeletal bone formation, or heterotopic ossification (HO), occurs following mechanic...
SummaryChondrocyte hypertrophy is essential for endochondral bone development. Unexpectedly, we disc...