Abstract

BackgroundSystemic lupus erythematosus (SLE) is a common systemic autoimmune disease with a complex genetic inheritance. Genome-wide association studies (GWAS) have significantly increased the number of significant loci associated with SLE risk. To date, however, established loci account for less than 30% of the disease heritability and additional risk variants have yet to be identified. Here we performed a GWAS followed by a meta-analysis to identify new genome-wide significant loci for SLE.MethodsWe genotyped a cohort of 907 patients with SLE (cases) and 1524 healthy controls from Spain and performed imputation using the 1000 Genomes reference data. We tested for association using logistic regression with correction for the principal components of variation. Meta-analysis of the association results was subsequently performed on 7,110,321 variants using genetic data from a large cohort of 4036 patients with SLE and 6959 controls of Northern European ancestry. Genetic association was also tested at the pathway level after removing the effect of known risk loci using PASCAL software.ResultsWe identified five new loci associated with SLE at the genome-wide level of significance (p < 5 × 10− 8): GRB2, SMYD3, ST8SIA4, LAT2 and ARHGAP27. Pathway analysis revealed several biological processes significantly associated with SLE risk: B cell receptor signaling (p = 5.28 × 10− 6), CTLA4 co-stimulation during T cell activation (p = 3.06 × 10− 5), interleukin-4 signaling (p = 3.97 × 10− 5) and cell surface interactions at the vascular wall (p = 4.63 × 10− 5).ConclusionsOur results identify five novel loci for SLE susceptibility, and biologic pathways associated via multiple low-effect-size loci.

Highlights

  • Systemic lupus erythematosus (SLE) is a common systemic autoimmune disease with a complex genetic inheritance

  • 7,110,321 variants were present in the European ancestry Genome-wide association studies (GWAS): 51 of the 52 previously known SLE risk loci were in the same effect-size direction as originally described

  • Three of the associated markers are Single nucleotide polymorphism (SNP) in introns of the genes encoding for growth factor receptor bound protein 2 (GRB2, rs36023980), SET and MYND domain containing 3 protein (SMYD3, rs1780813), and ST8 alpha-N-acetyl-neuraminide alpha-2,8-sialyltransferase 4 (ST8SIA4, rs55849330)

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Summary

Introduction

Systemic lupus erythematosus (SLE) is a common systemic autoimmune disease with a complex genetic inheritance. Systemic lupus erythematosus (SLE [MIM: 152700]) is a common systemic autoimmune disease characterized by the production of autoantibodies and a complex genetic inheritance. In SLE, GWAS have allowed the identification of more than 50 risk loci at a genome-wide significance level (p value

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