4.8 Article

Poly(ADP-Ribose) Links the DNA Damage Response and Biomineralization

Journal

CELL REPORTS
Volume 27, Issue 11, Pages 3124-+

Publisher

CELL PRESS
DOI: 10.1016/j.celrep.2019.05.038

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Funding

  1. British Heart Foundation [PG/15/38/31466, RG/17/2/32808]
  2. EU iNEXT [GA 653706, PID 1489]
  3. Cambridge Trust
  4. China Scholarship Council
  5. EPSRC (UK) Cambridge NanoDTC [EP/G037221/1]
  6. EPSRC doctoral training studentship
  7. Raymond and Beverly Sackler Fund
  8. EPSRC (UK) [EP/L027151/1]
  9. Cycle Pharmaceuticals Ltd.
  10. EPSRC [EP/L027151/1] Funding Source: UKRI
  11. MRC [MR/J007692/1, MR/M01066X/1] Funding Source: UKRI

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Biomineralization of the extracellular matrix is an essential, regulated process. Inappropriate mineralization of bone and the vasculature has devastating effects on patient health, yet an integrated understanding of the chemical and cell biological processes that lead to mineral nucleation remains elusive. Here, we report that biomineralization of bone and the vasculature is associated with extracellular poly(ADP-ribose) synthesized by poly(ADP-ribose) polymerases in response to oxidative and/or DNA damage. We use ultrastructural methods to show poly(ADP-ribose) can form both calcified spherical particles, reminiscent of those found in vascular calcification, and biomimetically calcified collagen fibrils similar to bone. Importantly, inhibition of poly(ADP-ribose) biosynthesis in vitro and in vivo inhibits biomineralization, suggesting a therapeutic route for the treatment of vascular calcifications. We conclude that poly(ADP-ribose) plays a central chemical role in both pathological and physiological extracellular matrix calcification.

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