Targeted Inactivation of Rin3 Increases Trabecular Bone Mass by Reducing Bone Resorption and Favouring Bone Formation

Mahéva Vallet1, Antonia Sophocleous1,2, Anna E Törnqvist3

  • 1Institute of Genetics and Molecular Medicine, University of Edinburgh, Edinburgh, UK.

Insights

Genetic variants in RIN3 influence Paget's disease of bone (PDB). Rin3 deficiency in mice increases bone mass by reducing osteoclast activity and promoting bone formation, suggesting PDB variants may cause RIN3 gain-of-function.

Area of Science:

  • Genetics
  • Bone Biology
  • Skeletal Diseases

Background:

  • Common genetic variants at the RIN3 locus are linked to Paget's disease of bone (PDB).
  • The precise mechanisms by which RIN3 variants contribute to PDB pathogenesis remain unclear.
  • Understanding RIN3's role in bone metabolism is crucial for PDB research.

Purpose of the Study:

  • To investigate the skeletal phenotype of mice lacking the Rin3 gene (Rin3-/-).
  • To elucidate the function of Rin3 in regulating bone mass and turnover.
  • To explore the potential link between Rin3 function and PDB predisposition.

Main Methods:

  • Analysis of skeletal parameters in female Rin3-/- mice and wild-type littermates.
  • Bone histomorphometry to assess osteoclast and osteoblast activity.
  • Comparison of trabecular and cortical bone parameters at different ages (8 and 52 weeks).

Main Results:

  • Rin3-/- mice exhibited significantly higher trabecular bone volume compared to wild-type mice at both 8 and 52 weeks.
  • A reduction in osteoclast surface relative to bone surface (Oc.S/BS%) was observed in 8-week-old Rin3-/- mice.
  • Increased single labeled perimeter (SL.Pm/B.Pm) in 52-week-old Rin3-/- mice suggests enhanced bone formation.

Conclusions:

  • Rin3 negatively regulates trabecular bone mass in mice.
  • Rin3 appears to inhibit osteoclastic bone resorption and favor bone formation.
  • Human genetic variants predisposing to PDB likely result from a gain-of-function in RIN3.