High-affinity P2Y2 and low-affinity P2X7 receptor interaction modulates ATP-mediated calcium signaling in murine

Nicholas Mikolajewicz1,2, Delaney Smith3, Svetlana V Komarova1,2

  • 1Faculty of Dentistry, McGill University, Montreal, Canada.

Insights

This study reveals how P2Y2 and P2X7 receptors interact to control calcium signals in bone cells. Understanding these purinergic receptor dynamics is key for bone mechanotransduction.

Area of Science:

  • Biophysics
  • Cell Biology
  • Biochemistry

Background:

  • The P2 purinergic receptor family, including P2XRs and P2YRs, is vital for physiological processes like bone mechanotransduction.
  • Osteoblasts express multiple P2 receptors, but their interactions in response to varying extracellular ATP concentrations remain unclear.

Purpose of the Study:

  • To investigate the interplay between P2Y2 and P2X7 receptors in osteoblasts.
  • To elucidate the mechanisms driving ATP-mediated calcium (Ca2+) responses and their impact on bone cell function.

Main Methods:

  • Utilized primary osteoblasts and C2C12 osteoblastic cells.
  • Employed mathematical modeling of P2Y2-induced Ca2+ release and P2X7 receptor dynamics.
  • Validated model predictions using CRISPR/Cas9-generated P2Y2 and P2X7 knockout cells.

Main Results:

  • Observed ATP-dependent Ca2+ response transitions (transient-oscillatory-transient) linked to receptor interactions and intracellular calcium handling.
  • Identified P2Y2 and P2X7 receptors as primary contributors to these complex Ca2+ signaling patterns.
  • Demonstrated that P2Y2 activity influences P2X7 receptor kinetics, impacting osteoblast mechanotransduction.

Conclusions:

  • The study provides crucial insights into the biophysical mechanisms of ATP-mediated Ca2+ signaling in osteoblasts.
  • These findings enhance our understanding of bone mechanoadaptation and the roles of P2Y2 and P2X7 receptors.

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