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1.
J Cell Biochem ; 77(4): 678-93, 2000 Apr.
Article in English | MEDLINE | ID: mdl-10771523

ABSTRACT

During development, mRNA for matrix metalloproteinase-13 (MMP-13) is found associated with cartilage undergoing hypertrophy, suggesting that this collagenase plays a role in cell enlargement and/or cartilage calcification. Using chondrocytes from prehypertrophic cartilage of chick embryo sternae, we have examined the relationship between MMP-13 expression and the transition to hypertrophy. When hypertrophy was induced by serum-free culture with ascorbate and bone morphogenetic protein-2 (BMP-2), MMP-13 mRNA levels paralleled those for type X collagen. Chondrocytes from the caudal, nonhypertrophying portion of chick sternae expressed neither type X collagen nor MMP-13, confirming that MMP-13 mRNA is a marker for hypertrophy. Zymography with conditioned medium yielded a proteinase band at 59 kDa, which was absent in nonhypertrophic chondrocytes. A polyclonal antibody raised against chick MMP-13 reacted with the 59-kDa protein, confirming that it is MMP-13. Although mRNA for MMP-13 peaked at days 4-5 of culture, only low levels of MMP-13 activity were present, and the activity increased gradually in parallel with later increases in MMP-2. These results suggest that MMP-13 is activated by MMP-2 during chondrocyte maturation, and that the combination of both proteinases is required to prepare cartilage matrix for subsequent calcification, before endochondral ossification.


Subject(s)
Chondrocytes/metabolism , Collagenases/biosynthesis , Animals , Biomarkers , Blotting, Northern , Blotting, Western , Cartilage/embryology , Chick Embryo , Chondrocytes/pathology , Collagen/biosynthesis , Culture Media, Serum-Free/metabolism , DNA, Complementary/metabolism , Electrophoresis, Polyacrylamide Gel , Hypertrophy/metabolism , Immunohistochemistry , In Situ Hybridization , Matrix Metalloproteinase 13 , Matrix Metalloproteinase 2/biosynthesis , Models, Biological , RNA, Messenger/metabolism , Sternum/embryology , Time Factors
2.
J Cell Biochem ; 66(3): 394-403, 1997 Sep 01.
Article in English | MEDLINE | ID: mdl-9257195

ABSTRACT

In serum-containing medium, ascorbic acid induces maturation of prehypertrophic chick embryo sternal chondrocytes. Recently, cultured chondrocytes have also been reported to undergo maturation in the presence of bone morphogenetic proteins or in serum-free medium supplemented with thyroxine. In the present study, we have examined the combined effect of ascorbic acid, BMP-2, and serum-free conditions on the induction of alkaline phosphatase and type X collagen in chick sternal chondrocytes. Addition of either ascorbate or rhBMP-2 to nonconfluent cephalic sternal chondrocytes produced elevated alkaline phosphatase levels within 24-72 h, and simultaneous exposure to both ascorbate and BMP yielded enzyme levels at least threefold those of either inducer alone. The effects of ascorbate and BMP were markedly potentiated by culture in serum-free medium, and alkaline phosphatase levels of preconfluent serum-free cultures treated for 48 h with BMP+ascorbate were equivalent to those reached in serum-containing medium only after confluence. While ascorbate addition was required for maximal alkaline phosphatase activity, it did not induce a rapid increase in type X collagen mRNA. In contrast, BMP added to serum-free medium induced a three- to fourfold increase in type X collagen mRNA within 24 h even in the presence of cyclohexamide, indicating that new protein synthesis was not required. Addition of thyroid hormone to serum-free medium was required for maximal ascorbate effects but not for BMP stimulation. Neither ascorbate nor BMP induced alkaline phosphatase activity in caudal sternal chondrocytes, which do not undergo hypertrophy during embryonic development. These results indicate that ascorbate+BMP in serum-free culture induces rapid chondrocyte maturation of prehypertrophic chondrocytes. The mechanisms for ascorbate and BMP action appear to be distinct, while BMP and thyroid hormone may share a similar mechanism for induction.


Subject(s)
Alkaline Phosphatase/metabolism , Ascorbic Acid/pharmacology , Bone Morphogenetic Proteins/pharmacology , Cartilage/cytology , Transforming Growth Factor beta , Alkaline Phosphatase/drug effects , Alkaline Phosphatase/genetics , Animals , Bone Morphogenetic Protein 2 , Cartilage/drug effects , Cell Size/drug effects , Cells, Cultured , Chick Embryo , Collagen/biosynthesis , Collagen/drug effects , Collagen/genetics , Culture Media, Serum-Free , Dexamethasone/pharmacology , Dose-Response Relationship, Drug , Hypertrophy , Insulin/pharmacology , Phenotype , Sternum
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