4.5 Article

Role of the progressive ankylosis gene (ank) in cartilage mineralization

Journal

MOLECULAR AND CELLULAR BIOLOGY
Volume 25, Issue 1, Pages 312-323

Publisher

AMER SOC MICROBIOLOGY
DOI: 10.1128/MCB.25.1.312-323.2005

Keywords

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Funding

  1. NIAMS NIH HHS [R01 AR046245, AR 46245] Funding Source: Medline
  2. NICHD NIH HHS [N01 HD 73263] Funding Source: Medline
  3. EUNICE KENNEDY SHRIVER NATIONAL INSTITUTE OF CHILD HEALTH &HUMAN DEVELOPMENT [N01HD073263] Funding Source: NIH RePORTER
  4. NATIONAL INSTITUTE OF ARTHRITIS AND MUSCULOSKELETAL AND SKIN DISEASES [R01AR046245] Funding Source: NIH RePORTER

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Mineralization of growth plate cartilage is a critical event during endochondral bone formation, which allows replacement of cartilage by bone. Ankylosis protein (Ank), which transports intracellular inorganic pyrophosphate (PPi) to the extracellular milieu, is expressed by hypertrophic and, especially highly, by terminally differentiated mineralizing growth plate chondrocytes. Blocking Ank transport activity or ank expression in terminally differentiated mineralizing growth plate chondrocytes led to increases of intra- and extracellular PPi concentrations, decreases of alkaline phosphatase (APase) expression and activity, and inhibition of mineralization, whereas treatment of these cells with the A-Pase inhibitor levamisole led to an increase of extracellular PPi concentration and inhibition of mineralization. Ank-overexpressing hypertrophic nonmineralizing growth plate chondrocytes showed decreased intra- and extracellular PPi levels; increased mineralization-related gene expression of AFase, type I collagen, and osteocalcin; increased APase activity; and mineralization. Treatment of Ank-expressing growth plate chondrocytes with a phosphate transport blocker (phosphonoformic acid [PFA]) inhibited uptake of inorganic phosphate (P-i) and gene expression of the type III Na+/P-i cotransporters Pit-1 and Pit-2. Furthermore, PTA or levamisole treatment of An k-overexpressing hypertrophic chondrocytes inhibited APase expression and activity and subsequent mineralization. In conclusion, increased Ank activity results in elevated intracellular PPi transport to the extracellular milieu, initial hydrolysis of PP, to P-i, P-i-mediated upregulation of APase gene expression and activity, further hydrolysis and removal of the mineralization inhibitor PPi, and subsequent mineralization.

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