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Publication : Cyp26b1 within the growth plate regulates bone growth in juvenile mice.

First Author  Minegishi Y Year  2014
Journal  Biochem Biophys Res Commun Volume  454
Issue  1 Pages  12-8
PubMed ID  25305491 Mgi Jnum  J:220200
Mgi Id  MGI:5632455 Doi  10.1016/j.bbrc.2014.10.001
Citation  Minegishi Y, et al. (2014) Cyp26b1 within the growth plate regulates bone growth in juvenile mice. Biochem Biophys Res Commun 454(1):12-8
abstractText  Retinoic acid (RA) is an active metabolite of vitamin A and plays important roles in embryonic development. CYP26 enzymes degrade RA and have specific expression patterns that produce a RA gradient, which regulates the patterning of various structures in the embryo. However, it has not been addressed whether a RA gradient also exists and functions in organs after birth. We found localized RA activities in the diaphyseal portion of the growth plate cartilage were associated with the specific expression of Cyp26b1 in the epiphyseal portion in juvenile mice. To disturb the distribution of RA, we generated mice lacking Cyp26b1 specifically in chondrocytes (Cyp26b1(Deltachon) cKO). These mice showed reduced skeletal growth in the juvenile stage. Additionally, their growth plate cartilage showed decreased proliferation rates of proliferative chondrocytes, which was associated with a reduced height in the zone of proliferative chondrocytes, and closed focally by four weeks of age, while wild-type mouse growth plates never closed. Feeding the Cyp26b1 cKO mice a vitamin A-deficient diet partially reversed these abnormalities of the growth plate cartilage. These results collectively suggest that Cyp26b1 in the growth plate regulates the proliferation rates of chondrocytes and is responsible for the normal function of the growth plate and growing bones in juvenile mice, probably by limiting the RA distribution in the growth plate proliferating zone.
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