Literature DB >> 26563994

DNA Methylation Changes in the IGF1R Gene in Birth Weight Discordant Adult Monozygotic Twins.

Pei-Chien Tsai1, Jenny Van Dongen2, Qihua Tan3, Gonneke Willemsen2, Lene Christiansen3, Dorret I Boomsma2, Tim D Spector1, Ana M Valdes1, Jordana T Bell1.   

Abstract

Low birth weight (LBW) can have an impact on health outcomes in later life, especially in relation to pre-disposition to metabolic disease. Several studies suggest that LBW resulting from restricted intrauterine growth leaves a footprint on DNA methylation in utero, and this influence likely persists into adulthood. To investigate this further, we performed epigenome-wide association analyses of blood DNA methylation using Infinium HumanMethylation450 BeadChip profiles in 71 adult monozygotic (MZ) twin pairs who were extremely discordant for birth weight. A signal mapping to the IGF1R gene (cg12562232, p = 2.62 × 10(-8)), was significantly associated with birth weight discordance at a genome-wide false-discovery rate (FDR) of 0.05. We pursued replication in three additional independent datasets of birth weight discordant MZ pairs and observed the same direction of association, but the results were not significant. However, a meta-analysis across the four independent samples, in total 216 birth-weight discordant MZ twin pairs, showed a significant positive association between birth weight and DNA methylation differences at IGF1R (random-effects meta-analysis p = .04), and the effect was particularly pronounced in older twins (random-effects meta-analysis p = .008, 98 older birth-weight discordant MZ twin pairs). The results suggest that severe intra-uterine growth differences (birth weight discordance >20%) are associated with methylation changes in the IGF1R gene in adulthood, independent of genetic effects.

Entities:  

Keywords:  birth weight; discordant monozygotic twin pairs; epigenome-wide association scans

Mesh:

Substances:

Year:  2015        PMID: 26563994     DOI: 10.1017/thg.2015.76

Source DB:  PubMed          Journal:  Twin Res Hum Genet        ISSN: 1832-4274            Impact factor:   1.587


  12 in total

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3.  Environmentally sensitive hotspots in the methylome of the early human embryo.

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4.  Intergenerational Transmission of Birth Weight Across 3 Generations.

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5.  Epigenome-wide Association of DNA Methylation in Whole Blood With Bone Mineral Density.

Authors:  John A Morris; Pei-Chien Tsai; Roby Joehanes; Jie Zheng; Katerina Trajanoska; Mette Soerensen; Vincenzo Forgetta; Juan Edgar Castillo-Fernandez; Morten Frost; Tim D Spector; Kaare Christensen; Lene Christiansen; Fernando Rivadeneira; Jonathan H Tobias; David M Evans; Douglas P Kiel; Yi-Hsiang Hsu; J Brent Richards; Jordana T Bell
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Journal:  PLoS One       Date:  2018-03-22       Impact factor: 3.240

7.  Shared genetic origin of asthma, hay fever and eczema elucidates allergic disease biology.

Authors:  Manuel A Ferreira; Judith M Vonk; Hansjörg Baurecht; Ingo Marenholz; Chao Tian; Joshua D Hoffman; Quinta Helmer; Annika Tillander; Vilhelmina Ullemar; Jenny van Dongen; Yi Lu; Franz Rüschendorf; Jorge Esparza-Gordillo; Chris W Medway; Edward Mountjoy; Kimberley Burrows; Oliver Hummel; Sarah Grosche; Ben M Brumpton; John S Witte; Jouke-Jan Hottenga; Gonneke Willemsen; Jie Zheng; Elke Rodríguez; Melanie Hotze; Andre Franke; Joana A Revez; Jonathan Beesley; Melanie C Matheson; Shyamali C Dharmage; Lisa M Bain; Lars G Fritsche; Maiken E Gabrielsen; Brunilda Balliu; Jonas B Nielsen; Wei Zhou; Kristian Hveem; Arnulf Langhammer; Oddgeir L Holmen; Mari Løset; Gonçalo R Abecasis; Cristen J Willer; Andreas Arnold; Georg Homuth; Carsten O Schmidt; Philip J Thompson; Nicholas G Martin; David L Duffy; Natalija Novak; Holger Schulz; Stefan Karrasch; Christian Gieger; Konstantin Strauch; Ronald B Melles; David A Hinds; Norbert Hübner; Stephan Weidinger; Patrik K E Magnusson; Rick Jansen; Eric Jorgenson; Young-Ae Lee; Dorret I Boomsma; Catarina Almqvist; Robert Karlsson; Gerard H Koppelman; Lavinia Paternoster
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8.  Developmental Tuning of Epigenetic Clock.

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Journal:  Front Genet       Date:  2018-11-22       Impact factor: 4.599

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10.  Metabolomics profiling reveals novel markers for leukocyte telomere length.

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Journal:  Aging (Albany NY)       Date:  2016-01       Impact factor: 5.682

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