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.
Abstract:
Multiple sclerosis (MS) is a chronic relapsing-remitting inflammatory disease of the central nervous system characterized by oligodendrocyte damage, demyelination and neuronal death. Genetic association studies have shown a 2-fold or greater prevalence of the HLA-DRB1*1501 allele in the MS population compared with normal Caucasians. In discovery cohorts of Australasian patients with MS (total 2941 patients and 3008 controls), we examined the associations of 12 functional polymorphisms of P2X7, a microglial/macrophage receptor with proinflammatory effects when activated by extracellular adenosine triphosphate (ATP). In discovery cohorts, rs28360457, coding for Arg307Gln was associated with MS and combined analysis showed a 2-fold lower minor allele frequency compared with controls (1.11% for MS and 2.15% for controls, P = 0.0000071). Replication analysis of four independent European MS case-control cohorts (total 2140 cases and 2634 controls) confirmed this association [odds ratio (OR) = 0.69, P = 0.026]. A meta-analysis of all Australasian and European cohorts indicated that Arg307Gln confers a 1.8-fold protective effect on MS risk (OR = 0.57, P = 0.0000024). Fresh human monocytes heterozygous for Arg307Gln have >85% loss of 'pore' function of the P2X7 receptor measured by ATP-induced ethidium uptake. Analysis shows Arg307Gln always occurred with 270His suggesting a single 307Gln-270His haplotype that confers dominant negative effects on P2X7 function and protection against MS. Modeling based on the homologous zP2X4 receptor showed Arg307 is located in a region rich in basic residues located only 12 Å from the ligand binding site. Our data show the protective effect against MS of a rare genetic variant of P2RX7 with heterozygotes showing near absent proinflammatory 'pore' function.
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.
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