免疫学
自身抗体
全基因组关联研究
医学
抗体
人口
等位基因
遗传关联
自身免疫
表型
自身免疫性疾病
系统性红斑狼疮
红斑狼疮
遗传学
基因
疾病
生物
基因型
单核苷酸多态性
内科学
环境卫生
作者
Shuji Akizuki,Kazuyoshi Ishigaki,Yuta Kochi,Sze-Ming Law,Keitaro Matsuo,Koichiro Ohmura,Akari Suzuki,Manabu Nakayama,Yusuke Iizuka,Haruhiko Koseki,Osamu Ohara,Jun Hirata,Yoichiro Kamatani,Fumihiko Matsuda,Takayuki Sumida,Kazuhiko Yamamoto,Yukinori Okada,Tsuneyo Mimori,Chikashi Terao
标识
DOI:10.1136/annrheumdis-2018-214116
摘要
Systemic lupus erythematosus (SLE) is an autoimmune disease that is characterised by autoantibody production and widespread inflammation damaging many organs. Previous genome-wide association studies (GWASs) have revealed over 80 genetic determinants of SLE, but they collectively explain a fraction of the heritability, and only a few were proven in vivo for the involvement in SLE. We conducted a meta-analysis of SLE GWAS in the Japanese population, followed by functional analyses of a susceptibility gene with use of mutant mice.We conducted a meta-analysis of two GWASs comprising a total of 1363 cases and 5536 controls using the 1000 Genome Project data as an imputation reference. Enrichment analyses for functional annotations were conducted. We examined Phospholipase D4 (Pld4) mutant mice to assess functional involvement of a genetic determinant.We found a total of 14 significant loci, which included rs2582511 in AHNAK2/PLD4 recently reported in a Chinese study and a novel locus of rs143181706 in MAMLD1 (p=7.9×10-11 and 3.7×10-8, respectively). PLD4 risk allele was associated with anti-dsDNA antibody production. Enrichment analysis of genetic signals revealed involvement of a wide range of immune-related cells and pathways. Pld4 mutant mice revealed remarkably low body weight. The mice demonstrated autoimmune phenotypes compatible with SLE, including splenomegaly and lymphadenopathy, expansion of B cells and hypersecretion of BAFF and production of autoantibodies especially anti-nuclear antibody and anti-dsDNA antibody.We found a novel susceptibility gene to SLE. Pld4 mutant mice revealed autoimmune phenotypes suggesting functional involvement of PLD4 with the basics of SLE.
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