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GWAS for serum galactose-deficient IgA1 implicates critical genes of the O-glycosylation pathway

机译:血清半乳糖缺陷IgA1的Gwas意味着O-糖基化途径的关键基因

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Aberrant O-glycosylation of serum immunoglobulin A1 (IgA1) represents a heritable pathogenic defect in IgA nephropathy, the most common form of glomerulonephritis worldwide, but specific genetic factors involved in its determination are not known. We performed a quantitative GWAS for serum levels of galactose-deficient IgA1 (Gd-IgA1) in 2,633 subjects of European and East Asian ancestry and discovered two genome-wide significant loci, in C1GALT1 (rs13226913, P = 3.2 x 10?11) and C1GALT1C1 (rs5910940, P = 2.7 x 10?8). These genes encode molecular partners essential for enzymatic O-glycosylation of IgA1. We demonstrated that these two loci explain approximately 7% of variability in circulating Gd-IgA1 in Europeans, but only 2% in East Asians. Notably, the Gd-IgA1-increasing allele of rs13226913 is common in Europeans, but rare in East Asians. Moreover, rs13226913 represents a strong cis-eQTL for C1GALT1 that encodes the key enzyme responsible for the transfer of galactose to O-linked glycans on IgA1. By in vitro siRNA knock-down studies, we confirmed that mRNA levels of both C1GALT1 and C1GALT1C1 determine the rate of secretion of Gd-IgA1 in IgA1-producing cells. Our findings provide novel insights into the genetic regulation of O-glycosylation and are relevant not only to IgA nephropathy, but also to other complex traits associated with O-glycosylation defects, including inflammatory bowel disease, hematologic disease, and cancer.
机译:血清免疫球蛋白A1(IgA1)的异常O-糖基化代表IgA肾病中的遗传性致病性缺陷,全球最常见的肾小球肾炎形式,但涉及其测定的特异性遗传因素是未知的。我们在欧洲和东亚祖先的2,633名受试者中对欧乳糖缺乏IgA1(GD-IGA1)进行了血清半乳糖缺乏IgA1(GD-IGA1)的定量GWA,并在C1GALT1(RS13226913,P = 3.2×10?11)中发现了两个基因组显着的基因座C1GALT1C1(RS5910940,P = 2.7 x 10?8)。这些基因编码IgA1的酶促糖基化必需的分子伴侣。我们证明,这两个基因座在欧洲人循环Gd-IgA1中解释了大约7%的变异性,但东亚人中只有2%。值得注意的是,RS13226913的GD-IGA1增加的等位基因在欧洲人中常见,但在东亚人群中罕见。此外,RS13226913代表了C1GALT1的强调CIS-EQT1,其编码负责半乳糖转移到IgA1上的O-连接的聚糖的关键酶。通过体外siRNA淘汰研究,我们证实C1GALT1和C1GALT1C1的mRNA水平确定了产生IgA1产生细胞中Gd-IgA1的分泌速率。我们的研究结果提供了对O-糖基化的遗传调节的新颖见解,不仅与IgA肾病相关的遗传调节,而且与其他与O-糖基化缺陷相关的其他复杂性状相关,包括炎症性肠病,血液学疾病和癌症。

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