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PMID: 19228808 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Type 2 diabetes risk alleles are associated with reduced size at birth.

Diabetes ·Vol. 58 ·No. 6 ·2009-06-00 ·Pages 1428-33

Freathy RM, Bennett AJ, Ring SM, Shields B, Groves CJ, Timpson NJ, Weedon MN, Zeggini E, Lindgren CM, Lango H, Perry JR, Pouta A, Ruokonen A, Hyppönen E, Power C, Elliott P, Strachan DP, Järvelin MR, Smith GD, McCarthy MI, Frayling TM, Hattersley AT

Abstract

Low birth weight is associated with an increased risk of type 2 diabetes. The mechanisms underlying this association are unknown and may represent intrauterine programming or two phenotypes of one genotype. The fetal insulin hypothesis proposes that common genetic variants that reduce insulin secretion or action may predispose to type 2 diabetes and also reduce birth weight, since insulin is a key fetal growth factor. We tested whether common genetic variants that predispose to type 2 diabetes also reduce birth weight. We genotyped single-nucleotide polymorphisms (SNPs) at five recently identified type 2 diabetes loci (CDKAL1, CDKN2A/B, HHEX-IDE, IGF2BP2, and SLC30A8) in 7,986 mothers and 19,200 offspring from four studies of white Europeans. We tested the association between maternal or fetal genotype at each locus and birth weight of the offspring. We found that type 2 diabetes risk alleles at the CDKAL1 and HHEX-IDE loci were associated with reduced birth weight when inherited by the fetus (21 g [95% CI 11-31], P = 2 x 10(-5), and 14 g [4-23], P = 0.004, lower birth weight per risk allele, respectively). The 4% of offspring carrying four risk alleles at these two loci were 80 g (95% CI 39-120) lighter at birth than the 8% carrying none (P(trend) = 5 x 10(-7)). There were no associations between birth weight and fetal genotypes at the three other loci or maternal genotypes at any locus. Our results are in keeping with the fetal insulin hypothesis and provide robust evidence that common disease-associated variants can alter size at birth directly through the fetal genotype.

MeSH Terms
Birth Weight Chromosome Mapping Cyclin-Dependent Kinase 5/genetics Diabetes Mellitus, Type 2/epidemiology,genetics Genetic Predisposition to Disease Homeodomain Proteins/genetics Humans Infant, Low Birth Weight Infant, Newborn Polymorphism, Single Nucleotide Transcription Factors/genetics Whites/genetics tRNA Methyltransferases
Chemicals
HHEX protein, human Homeodomain Proteins Transcription Factors tRNA Methyltransferases Cyclin-Dependent Kinase 5 CDKAL1 protein, human
Authors & Affiliations
22 authors, click to expand affiliations / ORCID
Freathy Rachel M
Genetics of Complex Traits, Institute of Biomedical and Clinical Science, Peninsula Medical School, Exeter, UK.
Bennett Amanda J
Ring Susan M
Shields Beverley
Groves Christopher J
Timpson Nicholas J
Weedon Michael N
Zeggini Eleftheria
Lindgren Cecilia M
Lango Hana
Perry John R B
Pouta Anneli
Ruokonen Aimo
Hyppönen Elina
Power Chris
Elliott Paul
Strachan David P
Järvelin Marjo-Riitta
Smith George Davey
McCarthy Mark I
Frayling Timothy M
Hattersley Andrew T
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Article Info
Journal
Diabetes
Abbr.
Diabetes
ISSN
1939-327X
Published
2009-06-00
Epub
2009-00-19
Pages
1428-33
Language
English
Region
United States
NLM ID
0372763
PMCID
PMC2682672
Subset
IM
Grants
Medical Research Council · G0500070 · United Kingdom
Wellcome Trust · 068545/Z/02 · United Kingdom
Wellcome Trust · 085541 · United Kingdom
Wellcome Trust · GR069224MA · United Kingdom
Department of Health · PHCS/C4/4/016 · United Kingdom
Wellcome Trust · 090532 · United Kingdom
Medical Research Council · G0400546 · United Kingdom
Medical Research Council · G0000934 · United Kingdom
Medical Research Council · G9815508 · United Kingdom
Wellcome Trust · 079557 · United Kingdom
Medical Research Council · G0600705 · United Kingdom
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