» Articles » PMID: 26880555

Regulatory Polymorphisms Modulate the Expression of HLA Class II Molecules and Promote Autoimmunity

Abstract

Targeted sequencing of sixteen SLE risk loci among 1349 Caucasian cases and controls produced a comprehensive dataset of the variations causing susceptibility to systemic lupus erythematosus (SLE). Two independent disease association signals in the HLA-D region identified two regulatory regions containing 3562 polymorphisms that modified thirty-seven transcription factor binding sites. These extensive functional variations are a new and potent facet of HLA polymorphism. Variations modifying the consensus binding motifs of IRF4 and CTCF in the XL9 regulatory complex modified the transcription of HLA-DRB1, HLA-DQA1 and HLA-DQB1 in a chromosome-specific manner, resulting in a 2.5-fold increase in the surface expression of HLA-DR and DQ molecules on dendritic cells with SLE risk genotypes, which increases to over 4-fold after stimulation. Similar analyses of fifteen other SLE risk loci identified 1206 functional variants tightly linked with disease-associated SNPs and demonstrated that common disease alleles contain multiple causal variants modulating multiple immune system genes.

Citing Articles

An overview on Sjögren's syndrome and systemic lupus erythematosus' genetics.

Ates I, Terzi U, Suzen S, Irham L Toxicol Res (Camb). 2025; 14(1):tfae194.

PMID: 39991010 PMC: 11847510. DOI: 10.1093/toxres/tfae194.


Across ancestries, HLA-B∗08:01∼DRB1∗03:01 (DR3) and HLA-DQA∗01:02 (DR2) increase the risk to develop juvenile-onset systemic lupus erythematosus through low complement C4 levels.

Renaudineau Y, Charras A, Natoli V, Congy-Jolivet N, Haldenby S, Liu X J Transl Autoimmun. 2025; 10:100268.

PMID: 39896198 PMC: 11786776. DOI: 10.1016/j.jtauto.2025.100268.


The 330 risk loci known for systemic lupus erythematosus (SLE): a review.

Laurynenka V, Harley J Front Lupus. 2024; 2.

PMID: 39624492 PMC: 11609870. DOI: 10.3389/flupu.2024.1398035.


KLF13 promotes SLE pathogenesis by modifying chromatin accessibility of key proinflammatory cytokine genes.

Wang A, Fairhurst A, Liu K, Wakeland B, Barnes S, Malladi V Commun Biol. 2024; 7(1):1446.

PMID: 39506084 PMC: 11541912. DOI: 10.1038/s42003-024-07099-0.


Systemic lupus erythematosus genetics: insights into pathogenesis and implications for therapy.

Ghodke-Puranik Y, Olferiev M, Crow M Nat Rev Rheumatol. 2024; 20(10):635-648.

PMID: 39232240 DOI: 10.1038/s41584-024-01152-2.


References
1.
Pritchard J, Cox N . The allelic architecture of human disease genes: common disease-common variant...or not?. Hum Mol Genet. 2002; 11(20):2417-23. DOI: 10.1093/hmg/11.20.2417. View

2.
Vander Lugt B, Khan A, Hackney J, Agrawal S, Lesch J, Zhou M . Transcriptional programming of dendritic cells for enhanced MHC class II antigen presentation. Nat Immunol. 2013; 15(2):161-7. DOI: 10.1038/ni.2795. View

3.
Hohler T, Buschenfelde K . Systemic lupus erythematosus. N Engl J Med. 1994; 331(18):1235. DOI: 10.1056/nejm199411033311816. View

4.
Bonnelykke K, Matheson M, Pers T, Granell R, Strachan D, Alves A . Meta-analysis of genome-wide association studies identifies ten loci influencing allergic sensitization. Nat Genet. 2013; 45(8):902-906. PMC: 4922420. DOI: 10.1038/ng.2694. View

5.
Barreiro L, Quintana-Murci L . From evolutionary genetics to human immunology: how selection shapes host defence genes. Nat Rev Genet. 2009; 11(1):17-30. DOI: 10.1038/nrg2698. View