Department of Biology and Biotechnology "Charles Darwin", Sapienza University of Rome, Rome, Italy.
Rheumatology Unit, Department of Medical Sciences and Public Health, University and Azienda Ospedaliero-Universitaria di Cagliari, Cagliari, Italy.
Rheumatology (Oxford). 2019 Dec 1;58(12):2315-2324. doi: 10.1093/rheumatology/kez212.
HLA-B27 and the endoplasmic reticulum aminopeptidase 1 (ERAP1) and ERAP2 genes are predisposing factors for AS. A single nucleotide polymorphism (SNP) in the ERAP2 promoter (rs75862629) coordinates the transcription of both ERAP genes. We investigated whether this SNP associates with AS and whether it affects the expression of the two major HLA-B27 alleles present in Sardinia, the AS-associated B2705 and the non-AS-associated B2709.
Four SNPs in the ERAP region were genotyped in HLA-B*2705-positive patients with AS (n = 145), B27-positive healthy subjects (n = 126) and B27-negative controls (n = 250) and the allele and haplotype frequencies were derived. The expression of ERAP1 and ERAP2 mRNAs in 36 HLA-B27-positive B lymphoblastoid cell lines was measured by quantitative PCR. An electrophoretic mobility shift assay was performed to search for a nuclear factor binding the DNA sequence encompassing rs75862629. The expression of HLA-B27 molecules related to the SNP at rs75862629 was determined by flow cytometry.
The minor allele G at rs75862629 was found significantly increased in B27 healthy individuals, both B2705 and B2709, compared with B2705-positive patients with AS and B27-negative controls. The electrophoretic mobility shift assay indicated the lack of binding of a transcription factor as the cause of the observed reduction in the ERAP2 concomitant with a higher ERAP1 expression. Of note, this occurs with a different cell surface expression of the HLA-B2705 and HLA-B*2709 molecules.
SNP rs75862629, by modulating simultaneously the expression of ERAP1 and ERAP2, provides protection from AS in HLA-B27-positive subjects in Sardinia. This has a functional impact on HLA-B27 expression and likely on disease onset.
HLA-B27 与内质网氨肽酶 1(ERAP1)和 ERAP2 基因是 AS 的易感因素。ERAP2 启动子中的单核苷酸多态性(SNP)(rs75862629)协调两个 ERAP 基因的转录。我们研究了该 SNP 是否与 AS 相关,以及它是否影响撒丁岛存在的两种主要 HLA-B27 等位基因(与 AS 相关的 B2705 和非 AS 相关的 B2709)的表达。
对 145 例 HLA-B*2705 阳性 AS 患者、126 例 B27 阳性健康对照者和 250 例 B27 阴性对照者的 ERAP 区域中的 4 个 SNP 进行基因分型,得出等位基因和单倍型频率。通过定量 PCR 测量 36 例 HLA-B27 阳性 B 淋巴母细胞系中 ERAP1 和 ERAP2 mRNA 的表达。进行电泳迁移率变动分析以寻找与 rs75862629 包含的 DNA 序列结合的核因子。通过流式细胞术测定与 rs75862629 相关的 SNP 对 HLA-B27 分子的表达。
与 AS 患者和 B27 阴性对照组相比,rs75862629 的次要等位基因 G 在 B27 健康个体中,无论是 B2705 还是 B2709,均显著增加。电泳迁移率变动分析表明,转录因子结合缺失是观察到的 ERAP2 表达降低同时 ERAP1 表达升高的原因。值得注意的是,这会导致 HLA-B2705 和 HLA-B2709 分子的细胞表面表达不同。
SNP rs75862629 通过同时调节 ERAP1 和 ERAP2 的表达,为撒丁岛 HLA-B27 阳性个体提供了对 AS 的保护。这对 HLA-B27 表达和可能的疾病发病有功能影响。