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Norway

PMID:28592560  

Ectopic calcification in pseudoxanthoma elasticum responds to inhibition of tissue-nonspecific alkaline phosphatase.

Shira G Ziegler | Carlos R Ferreira | Elena Gallo MacFarlane | Ryan C Riddle | Ryan E Tomlinson | Emily Y Chew | Ludovic Martin | Chen-Ting Ma | Eduard Sergienko | Anthony B Pinkerton | José Luis Millán | William A Gahl | Harry C Dietz
Science translational medicine | 2017

Biallelic mutations in ABCC6 cause pseudoxanthoma elasticum (PXE), a disease characterized by calcification in the skin, eyes, and blood vessels. The function of ATP-binding cassette C6 (ABCC6) and the pathogenesis of PXE remain unclear. We used mouse models and patient fibroblasts to demonstrate genetic interaction and shared biochemical and cellular mechanisms underlying ectopic calcification in PXE and related disorders caused by defined perturbations in extracellular adenosine 5'-triphosphate catabolism. Under osteogenic culture conditions, ABCC6 mutant cells calcified, suggesting a provoked cell-autonomous defect. Using a conditional Abcc6 knockout mouse model, we excluded the prevailing pathogenic hypothesis that singularly invokes failure of hepatic secretion of an endocrine inhibitor of calcification. Instead, deficiency of Abcc6 in both local and distant cells was necessary to achieve the early onset and penetrant ectopic calcification observed upon constitutive gene targeting. ABCC6 mutant cells additionally had increased expression and activity of tissue-nonspecific alkaline phosphatase (TNAP), an enzyme that degrades pyrophosphate, a major inhibitor of calcification. A selective and orally bioavailable TNAP inhibitor prevented calcification in ABCC6 mutant cells in vitro and attenuated both the development and progression of calcification in Abcc6-/- mice in vivo, without the deleterious effects on bone associated with other proposed treatment strategies.

Pubmed ID: 28592560

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Associated grants

  • Agency: NIAMS NIH HHS, United States
    Id: R01 AR053102
  • Agency: NIGMS NIH HHS, United States
    Id: T32 GM007814
  • Agency: NIGMS NIH HHS, United States
    Id: T32 GM007309
  • Agency: NIDCR NIH HHS, United States
    Id: R01 DE012889
  • Agency: NIH HHS, United States
    Id: S10 OD016374
  • Agency: Howard Hughes Medical Institute, United States

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This is a list of tools and resources that we have found mentioned in this publication.


International Mouse Phenotyping Consortium (IMPC) (tool)

RRID:SCR_006158

Center that produces knockout mice and carries out high-throughput phenotyping of each line in order to determine function of every gene in mouse genome. These mice will be preserved in repositories and made available to scientific community representing valuable resource for basic scientific research as well as generating new models for human diseases.

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