Vecellio Matteo, Roberts Amity R, Cohen Carla J, Cortes Adrian, Knight Julian C, Bowness Paul, Wordsworth B Paul
Nuffield Department of Orthopaedics, Rheumatology and Musculoskeletal Sciences, University of Oxford, Oxford, UK National Institute for Health Research Oxford Musculoskeletal Biomedical Research Unit, Oxford, UK National Institute for Health Research Oxford Comprehensive Biomedical Research Centre, Botnar Research Centre, Nuffield Orthopaedic Centre, Oxford, UK.
Division of Clinical Neurology, Nuffield Department of Clinical Neurosciences, John Radcliffe Hospital, University of Oxford, Oxford, UK Wellcome Trust Centre for Human Genetics, University of Oxford, Oxford, UK.
Ann Rheum Dis. 2016 Aug;75(8):1534-40. doi: 10.1136/annrheumdis-2015-207490. Epub 2015 Oct 9.
To identify the functional basis for the genetic association of single nucleotide polymorphisms (SNP), upstream of the RUNX3 promoter, with ankylosing spondylitis (AS).
We performed conditional analysis of genetic association data and used ENCODE data on chromatin remodelling and transcription factor (TF) binding sites to identify the primary AS-associated regulatory SNP in the RUNX3 region. The functional effects of this SNP were tested in luciferase reporter assays. Its effects on TF binding were investigated by electrophoretic mobility gel shift assays and chromatin immunoprecipitation. RUNX3 mRNA levels were compared in primary CD8+ T cells of AS risk and protective genotypes by real-time PCR.
The association of the RUNX3 SNP rs4648889 with AS (p<7.6×10(-14)) was robust to conditioning on all other SNPs in this region. We identified a 2 kb putative regulatory element, upstream of RUNX3, containing rs4648889. In reporter gene constructs, the protective rs4648889 'G' allele increased luciferase activity ninefold but significantly less activity (4.3-fold) was seen with the AS risk 'A' allele (p≤0.01). The binding of Jurkat or CD8+ T-cell nuclear extracts to the risk allele was decreased and IRF4 recruitment was reduced. The AS-risk allele also affected H3K4Me1 histone methylation and associated with an allele-specific reduction in RUNX3 mRNA (p<0.05).
We identified a regulatory region upstream of RUNX3 that is modulated by rs4648889. The risk allele decreases TF binding (including IRF4) and reduces reporter activity and RUNX3 expression. These findings may have important implications for understanding the role of T cells and other immune cells in AS.
确定RUNX3启动子上游单核苷酸多态性(SNP)与强直性脊柱炎(AS)遗传关联的功能基础。
我们对遗传关联数据进行了条件分析,并使用了关于染色质重塑和转录因子(TF)结合位点的ENCODE数据,以确定RUNX3区域中与AS相关的主要调控SNP。通过荧光素酶报告基因检测来测试该SNP的功能效应。通过电泳迁移率凝胶迁移试验和染色质免疫沉淀研究其对TF结合的影响。通过实时PCR比较AS风险和保护性基因型的原代CD8 + T细胞中RUNX3 mRNA水平。
RUNX3 SNP rs4648889与AS的关联(p<7.6×10(-14))在该区域的所有其他SNP条件下都很稳健。我们在RUNX3上游鉴定了一个2 kb的假定调控元件,其中包含rs4648889。在报告基因构建体中,保护性rs4648889“G”等位基因使荧光素酶活性增加了9倍,但AS风险“A”等位基因的活性明显较低(4.3倍)(p≤0.01)。Jurkat或CD8 + T细胞核提取物与风险等位基因的结合减少,IRF4募集减少。AS风险等位基因还影响H3K4Me1组蛋白甲基化,并与RUNX3 mRNA的等位基因特异性降低相关(p<0.05)。
我们鉴定了RUNX3上游的一个调控区域,该区域受rs4648889调控。风险等位基因降低TF结合(包括IRF4),并降低报告基因活性和RUNX3表达。这些发现可能对理解T细胞和其他免疫细胞在AS中的作用具有重要意义。