A rare P2X7 variant Arg307Gln with absent pore formation function protects against neuroinflammation in multiple

Ben J Gu1, Judith Field1, Sébastien Dutertre2

  • 1Florey Institute of Neuroscience and Mental Health, University of Melbourne, Parkville, Victoria, Australia.

Insights

A rare genetic variant in the P2RX7 gene, Arg307Gln, offers significant protection against multiple sclerosis (MS). This variant nearly eliminates the proinflammatory

Area of Science:

  • Neuroimmunology
  • Human Genetics
  • Molecular Biology

Background:

  • Multiple sclerosis (MS) is a chronic central nervous system inflammatory disease.
  • Genetic factors, including HLA-DRB1*1501, are known risk factors for MS.
  • The P2X7 receptor (P2RX7) on microglia and macrophages plays a role in neuroinflammation.

Purpose of the Study:

  • To investigate the association of P2RX7 functional polymorphisms with MS risk.
  • To determine the functional impact of identified variants on P2X7 receptor activity.
  • To assess the protective effect of P2RX7 variants against MS.

Main Methods:

  • Case-control association studies in Australasian and European cohorts (totaling over 5000 MS cases and 5600 controls).
  • Genotyping of 12 P2RX7 polymorphisms, including rs28360457 (Arg307Gln).
  • Functional assays measuring ATP-induced ethidium uptake in human monocytes.

Main Results:

  • The P2RX7 variant rs28360457 (Arg307Gln) was significantly associated with reduced MS risk (OR=0.57, P=2.4x10^-6).
  • Heterozygotes for Arg307Gln exhibited >85% loss of P2X7 receptor 'pore' function.
  • The Arg307Gln variant, often in a 307Gln-270His haplotype, demonstrated dominant-negative effects on P2X7 function.

Conclusions:

  • A rare P2RX7 genetic variant, Arg307Gln, confers substantial protection against multiple sclerosis.
  • This protection is linked to a near-complete loss of P2X7 receptor proinflammatory 'pore' function.
  • Targeting P2X7 receptor function may represent a therapeutic strategy for MS.