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Polygenic Risk Variants for Type 2 Diabetes Susceptibility Modify Age at Diagnosis in Monogenic HNF1A Diabetes

机译:2型糖尿病易感性的多基因风险变量会改变单基因HNF1A糖尿病诊断时的年龄。

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摘要

Objective-Mutations in the HNF1A gene are the most common cause of maturity-onset diabetes of the young (MODY). There is a substantial variation in the age at diabetes diagnosis, even within families where diabetes is caused by the same mutation. We investigated the hypothesis that common polygenic variants that predispose to type 2 diabetes might account for the difference in age at diagnosis.rnResearch Design And Methods-Fifteen robustly as sociated type 2 diabetes variants were successfully genotyped in 410 individuals from 203 HNF1A-MODY families, from two study centers in the U.K. and Norway. We assessed their effect on the age at diagnosis both individually and in a combined genetic score by summing the number of type 2 diabetes risk alleles carried by each patient.rnResults-We confirmed the effects of environmental and genetic factors known to modify the age at HNF1A-MODY diagnosis, namely intrauterine hyperglycemia (-5.1 years if present, P = 1.6 × 10~(-10)) and HNF1A mutation position (-5.2 years if at least two isoforms affected, P = 1.8 × 10~(-2)). Additionally, our data showed strong effects of sex (females diagnosed 3.0 years earlier, P = 6.0 × 10~(-4)) and age at study (0.3 years later diagnosis per year increase in age, P = 4.7 × 10~(-38)). There were no strong individual single nucleotide polymorphism effects; however, in the combined genetic score model, each additional risk allele was associated with 0.35 years earlier diabetes diagnosis (P = 5.1 × 10~(-3)).rnConclusions-We show that type 2 diabetes risk variants of modest effect sizes reduce the age at diagnosis in HNF1A-MODY. This is one of the first studies to demonstrate that clinical characteristics of a monogenic disease can be modified by common polygenic variants.
机译:HNF1A基因的客观突变是年轻人成熟发病糖尿病的最常见原因(MODY)。诊断糖尿病的年龄存在很大差异,即使在由相同突变引起糖尿病的家庭中也是如此。我们调查了以下假说,即易患2型糖尿病的常见多基因变异可能会解释诊断时的年龄差异。研究设计与方法-在203个HNF1A-MODY家庭的410个个体中成功地进行了15种作为相关性2型糖尿病变异的基因分型,来自英国和挪威的两个研究中心。我们通过对每位患者携带的2型糖尿病风险等位基因的总数进行求和,评估了它们对诊断时的年龄的影响,以及在单独的遗传评分中的总和。rn结果-我们确认了已知环境和遗传因素可改变HNF1A的年龄-MODY诊断,即宫内高血糖症(如果存在则为-5.1年,P = 1.6×10〜(-10))和HNF1A突变位置(如果受到至少两种同工型则为-5.2年,P = 1.8×10〜(-2) )。此外,我们的数据显示性别(女性在3.0岁之前被诊断,P = 6.0×10〜(-4))和研究年龄(在女性0.3岁以后,每年诊断的年龄增加,P = 4.7×10〜(- 38))。没有强烈的个体单核苷酸多态性效应;然而,在组合遗传评分模型中,每增加一个风险等位基因都与早诊断糖尿病0.35年相关(P = 5.1×10〜(-3))。rn结论-我们证明,影响大小适中的2型糖尿病风险变异降低了HNF1A-MODY诊断时的年龄。这是最早证明单基因疾病的临床特征可以通过常见的多基因变体进行修饰的研究之一。

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  • 来源
    《Diabetes》 |2010年第1期|266-271|共6页
  • 作者单位

    Genetics of Complex Traits, Peninsula College of Medicine and Dentistry, University of Exeter, Exeter, U.K. Department of Diabetes Genetics, Peninsula College of Medicine and Dentistry, University of Exeter, Exeter, U.K.;

    Department of Clinical Medicine, University of Bergen, Bergen, Norway Center for Medical Genetics and Molecular Medicine, Haukeland University Hospital, Bergen, Norway Department of Biomedicine, University of Bergen, Bergen, Norway;

    Department of Diabetes Genetics, Peninsula College of Medicine and Dentistry, University of Exeter, Exeter, U.K.;

    Department of Diabetes Genetics, Peninsula College of Medicine and Dentistry, University of Exeter, Exeter, U.K.;

    Department of Clinical Medicine, University of Bergen, Bergen, Norway Center for Medical Genetics and Molecular Medicine, Haukeland University Hospital, Bergen, Norway;

    Department of Clinical Medicine, University of Bergen, Bergen, Norway Department of Pediatrics, Haukeland University Hospital, Bergen, Norway;

    Department of Diabetes Genetics, Peninsula College of Medicine and Dentistry, University of Exeter, Exeter, U.K.;

    Section for Pathology, Gade Institute, University of Bergen, Bergen, Norway Department of Pathology, Haukeland University Hospital, Bergen, Norway;

    Genetics of Complex Traits, Peninsula College of Medicine and Dentistry, University of Exeter, Exeter, U.K. Department of Diabetes Genetics, Peninsula College of Medicine and Dentistry, University of Exeter, Exeter, U.K.;

    Department of Clinical Medicine, University of Bergen, Bergen, Norway Department of Pediatrics, Haukeland University Hospital, Bergen, Norway;

    Department of Diabetes Genetics, Peninsula College of Medicine and Dentistry, University of Exeter, Exeter, U.K.;

    Genetics of Complex Traits, Peninsula College of Medicine and Dentistry, University of Exeter, Exeter, U.K. Department of Diabetes Genetics, Peninsula College of Medicine and Dentistry, University of Exeter, Exeter, U.K.;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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  • 入库时间 2022-08-18 03:46:36

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