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Retinoic acid receptors are required for skeletal growth, matrix homeostasis and growth plate function in postnatal mouse
Authors:Julie A. Williams  Takahiro Okabe  Diane M. Pilchak  Takanaga Ochiai  Mon-Li Chu  Joseph L. Napoli  Norbert Ghyselinck  Maurizio Pacifici  Masahiro Iwamoto
Affiliation:a Department of Orthopaedic Surgery, Thomas Jefferson University College of Medicine, Philadelphia, PA 19107, USA
b Department of Dermatology and Cutaneous Biology, Thomas Jefferson University College of Medicine, Philadelphia, PA 19107, USA
c Department of Nutritional Sciences and Toxicology, University of California Berkeley, Berkeley, CA 94720, USA
d Institut de Genetique et de Biologie Moleculaire et Cellulaire (IGBMC), Institut National de la Sante' et de la Recherche Medicale (INSERM), 67404 Illkirch Cedex, France
Abstract:The retinoic acid receptors α, β and γ (RARα, RARβ and RARγ) are nuclear hormone receptors that regulate fundamental processes during embryogenesis, but their roles in skeletal development and growth remain unclear. To study skeletal-specific RAR function, we created conditional mouse mutants deficient in RAR expression in cartilage. We find that mice deficient in RARα and RARγ (or RARβ and RARγ) exhibit severe growth retardation obvious by about 3 weeks postnatally. Their growth plates are defective and, importantly, display a major drop in aggrecan expression and content. Mice deficient in RARα and RARβ, however, are virtually normal, suggesting that RARγ is essential. In good correlation, we find that RARγ is the most strongly expressed RAR in mouse growth plate and its expression characterizes the proliferative and pre-hypertrophic zones where aggrecan is strongly expressed also. By being avascular, those zones lack endogenous retinoids as indicated by previous RARE reporter mice and our direct biochemical measurements and thus, RARγ is likely to exert ligand-less repressor function. Indeed, our data indicate that: aggrecan production is enhanced by RARγ over-expression in chondrocytes under retinoid-free culture conditions; production is further boosted by co-repressor Zac1 or pharmacologic agents that enhance RAR repressor function; and RAR/Zac1 function on aggrecan expression may involve Sox proteins. In sum, our data reveal that RARs, and RARγ in particular, exert previously unappreciated roles in growth plate function and skeletal growth and regulate aggrecan expression and content. Since aggrecan is critical for growth plate function, its deficiency in RAR-mutant mice is likely to have contributed directly to their growth retardation.
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