TY - JOUR
T1 - Dmp1-deficient mice display severe defects in cartilage formation responsible for a chondrodysplasia-like phenotype
AU - Ye, Ling
AU - Mishina, Yuji
AU - Chen, Di
AU - Huang, Haiyang
AU - Dallas, Sarah L.
AU - Dallas, Mark R.
AU - Sivakumar, Pitchumani
AU - Kunieda, Tetsuo
AU - Tsutsui, Takeo W.
AU - Boskey, Adele
AU - Bonewald, Lynda F.
AU - Feng, Jian Q.
PY - 2005/2/18
Y1 - 2005/2/18
N2 - Understanding the molecular mechanisms by which cartilage formation is regulated is essential toward understanding the physiology of both embryonic bone development and postnatal bone growth. Although much is known about growth factor signaling in cartilage formation, the regulatory role of noncollagenous matrix proteins in this process are still largely unknown. In the present studies, we present evidence for a critical role of DMP1 (dentin matrix protein 1) in postnatal chondrogenesis. The Dmp1 gene was originally identified from a rat incisor cDNA library and has been shown to play an important role in late stage dentinogenesis. Whereas no apparent abnormalities were observed in prenatal bone development, Dmp1-deficient (Dmp1-/-) mice unexpectedly develop a severe defect in cartilage formation during postnatal chondrogenesis. Vertebrae and long bones in Dmp1-deficient (Dmp1-/-) mice are shorter and wider with delayed and malformed secondary ossification centers and an irregular and highly expanded growth plate, results of both a highly expanded proliferation and a highly expanded hypertrophic zone creating a phenotype resembling dwarfism with chondrodysplasia. This phenotype appears to be due to increased cell proliferation in the proliferating zone and reduced apoptosis in the hypertrophic zone. In addition, blood vessel invasion is impaired in the epiphyses of Dmp1-/- mice. These findings show that DMP1 is essential for normal postnatal chondrogenesis and subsequent osteogenesis.
AB - Understanding the molecular mechanisms by which cartilage formation is regulated is essential toward understanding the physiology of both embryonic bone development and postnatal bone growth. Although much is known about growth factor signaling in cartilage formation, the regulatory role of noncollagenous matrix proteins in this process are still largely unknown. In the present studies, we present evidence for a critical role of DMP1 (dentin matrix protein 1) in postnatal chondrogenesis. The Dmp1 gene was originally identified from a rat incisor cDNA library and has been shown to play an important role in late stage dentinogenesis. Whereas no apparent abnormalities were observed in prenatal bone development, Dmp1-deficient (Dmp1-/-) mice unexpectedly develop a severe defect in cartilage formation during postnatal chondrogenesis. Vertebrae and long bones in Dmp1-deficient (Dmp1-/-) mice are shorter and wider with delayed and malformed secondary ossification centers and an irregular and highly expanded growth plate, results of both a highly expanded proliferation and a highly expanded hypertrophic zone creating a phenotype resembling dwarfism with chondrodysplasia. This phenotype appears to be due to increased cell proliferation in the proliferating zone and reduced apoptosis in the hypertrophic zone. In addition, blood vessel invasion is impaired in the epiphyses of Dmp1-/- mice. These findings show that DMP1 is essential for normal postnatal chondrogenesis and subsequent osteogenesis.
UR - http://www.scopus.com/inward/record.url?scp=20044383563&partnerID=8YFLogxK
UR - http://www.scopus.com/inward/citedby.url?scp=20044383563&partnerID=8YFLogxK
U2 - 10.1074/jbc.M412911200
DO - 10.1074/jbc.M412911200
M3 - Article
C2 - 15590631
AN - SCOPUS:20044383563
SN - 0021-9258
VL - 280
SP - 6197
EP - 6203
JO - Journal of Biological Chemistry
JF - Journal of Biological Chemistry
IS - 7
ER -