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血清半乳糖缺陷型IgA1的全基因组关联研究揭示了O-糖基化途径的关键基因。

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

作者信息

Kiryluk Krzysztof, Li Yifu, Moldoveanu Zina, Suzuki Hitoshi, Reily Colin, Hou Ping, Xie Jingyuan, Mladkova Nikol, Prakash Sindhuri, Fischman Clara, Shapiro Samantha, LeDesma Robert A, Bradbury Drew, Ionita-Laza Iuliana, Eitner Frank, Rauen Thomas, Maillard Nicolas, Berthoux Francois, Floege Jürgen, Chen Nan, Zhang Hong, Scolari Francesco, Wyatt Robert J, Julian Bruce A, Gharavi Ali G, Novak Jan

机构信息

Dept. of Medicine, Div. of Nephrology, College of Physicians and Surgeons, Columbia University, New York, New York, United States of America.

Dept. of Microbiology, University of Alabama at Birmingham, Birmingham, Alabama, United States of America.

出版信息

PLoS Genet. 2017 Feb 10;13(2):e1006609. doi: 10.1371/journal.pgen.1006609. eCollection 2017 Feb.

Abstract

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.

摘要

血清免疫球蛋白A1(IgA1)的异常O-糖基化是IgA肾病(全球最常见的肾小球肾炎形式)中的一种遗传性致病缺陷,但尚不清楚参与其决定的具体遗传因素。我们对2633名欧洲和东亚血统的受试者的血清半乳糖缺乏型IgA1(Gd-IgA1)水平进行了定量全基因组关联研究(GWAS),并在C1GALT1(rs13226913,P = 3.2×10-11)和C1GALT1C1(rs5910940,P = 2.7×10-8)中发现了两个全基因组显著位点。这些基因编码IgA1酶促O-糖基化所必需的分子伴侣。我们证明,这两个位点解释了欧洲人循环Gd-IgA1中约7%的变异性,但在东亚人中仅为2%。值得注意的是,rs13226913的Gd-IgA1增加等位基因在欧洲人中很常见,但在东亚人中很少见。此外,rs13226913代表C1GALT1的一个强顺式表达数量性状位点(cis-eQTL),C1GALT1编码负责将半乳糖转移到IgA1上O-连接聚糖的关键酶。通过体外小干扰RNA(siRNA)敲低研究,我们证实C1GALT1和C1GALT1C1的mRNA水平决定了产生IgA1的细胞中Gd-IgA1的分泌速率。我们的发现为O-糖基化的遗传调控提供了新的见解,不仅与IgA肾病相关,也与其他与O-糖基化缺陷相关的复杂性状相关,包括炎症性肠病、血液系统疾病和癌症。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/80db/5328405/f1608950c126/pgen.1006609.g001.jpg

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