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Genome-wide association study identifies two loci strongly affecting transferrin glycosylation

机译:全基因组关联研究确定了两个位点,这些位点强烈影响转铁蛋白糖基化

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Polysaccharide sidechains attached to proteins play important roles in cell–cell and receptor–ligand interactions. Variation in the carbohydrate component has been extensively studied for the iron transport protein transferrin, because serum levels of the transferrin isoforms asialotransferrin + disialotransferrin (carbohydrate-deficient transferrin, CDT) are used as biomarkers of excessive alcohol intake. We conducted a genome-wide association study to assess whether genetic factors affect CDT concentration in serum. CDT was measured in three population-based studies: one in Switzerland (CoLaus study, n = 5181) and two in Australia (n = 1509, n = 775). The first cohort was used as the discovery panel and the latter ones served as replication. Genome-wide single-nucleotide polymorphism (SNP) typing data were used to identify loci with significant associations with CDT as a percentage of total transferrin (CDT%). The top three SNPs in the discovery panel (rs2749097 near PGM1 on chromosome 1, and missense polymorphisms rs1049296, rs1799899 in TF on chromosome 3) were successfully replicated , yielding genome-wide significant combined association with CDT% (P = 1.9 × 10−9, 4 × 10−39, 5.5 × 10−43, respectively) and explain 5.8% of the variation in CDT%. These allelic effects are postulated to be caused by variation in availability of glucose-1-phosphate as a precursor of the glycan (PGM1), and variation in transferrin (TF) structure.
机译:附着于蛋白质的多糖侧链在细胞-细胞和受体-配体相互作用中起重要作用。对于铁转运蛋白运铁蛋白,碳水化合物成分的变化已被广泛研究,因为运铁蛋白同工型去唾液铁运铁蛋白+二唾液铁运铁蛋白(碳水化合物不足的运铁蛋白,CDT)的血清水平被用作过量摄入酒精的生物标志物。我们进行了全基因组关联研究,以评估遗传因素是否影响血清CDT浓度。 CDT在三项基于人群的研究中进行了测量:一项在瑞士(CoLaus研究,n = 5181)和两项在澳大利亚(n = 1509,n = 775)。第一个队列用作发现小组,后一个队列用作复制。全基因组单核苷酸多态性(SNP)分型数据用于鉴定与CDT显着相关的基因座,占总转铁蛋白的百分比(CDT%)。成功复制了发现面板中的前三个SNP(1号染色体上PGM1附近的rs2749097和3号染色体上TF中的错义多态性rs1049296,rs1799899),产生了与CDT%的全基因组显着联合关联(P = 1.9×10 −9 ,4×10 -39 ,5.5×10 -43 ),并解释了CDT%变化的5.8%。推测这些等位基因效应是由作为聚糖前体(PGM1)的1磷酸葡萄糖葡萄糖的利用率变化和转铁蛋白(TF)结构的变化引起的。

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  • 来源
    《Human Molecular Genetics》 |2011年第18期|p.3710-3717|共8页
  • 作者单位

    Department of Medical Genetics, University of Lausanne, Lausanne, 1005, Switzerland,|Swiss Institute of Bioinformatics, Lausanne, 1005, Switzerland,;

    Queensland Statistical Genetics Laboratory, Queensland Institute of Medical Research, Brisbane 4006, Australia,;

    Department of Medical Genetics, University of Lausanne, Lausanne, 1005, Switzerland,|Swiss Institute of Bioinformatics, Lausanne, 1005, Switzerland,;

    GlaxoSmithKline, King of Prussia, PA 19406, USA,;

    Department of Medicine, Internal Medicine, CHUV, Lausanne 1011, Switzerland,;

    Molecular Epidemiology Laboratory and;

    Genetic Epidemiology Laboratory, Queensland Institute of Medical Research, Brisbane 4006, Australia,;

    Department of Psychiatry, Washington University, St Louis 63110, USA,;

    Department of Psychiatry, Washington University, St Louis 63110, USA,;

    Department of Medical Genetics, University of Lausanne, Lausanne, 1005, Switzerland,|Service of Medical Genetics, Centre Hospitalier Universitaire Vaudois (CHUV) University Hospital, 1011 Lausanne, Switzerland, and;

    Department of Medicine, Internal Medicine, CHUV, Lausanne 1011, Switzerland,;

    Institute of Social and Preventive Medicine (IUMSP), University Hospital Center (CHUV) and University of Lausanne, Lausanne 1005, Switzerland;

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