Literature DB >> 28260562

The effect of paternal methyl-group donor intake on offspring DNA methylation and birth weight.

S Pauwels1, I Truijen1, M Ghosh1, R C Duca1, S A S Langie2, B Bekaert3, K Freson4, I Huybrechts5, G Koppen2, R Devlieger6, L Godderis1.   

Abstract

Most nutritional studies on the development of children focus on mother-infant interactions. Maternal nutrition is critically involved in the growth and development of the fetus, but what about the father? The aim is to investigate the effects of paternal methyl-group donor intake (methionine, folate, betaine, choline) on paternal and offspring global DNA (hydroxy)methylation, offspring IGF2 DMR DNA methylation, and birth weight. Questionnaires, 7-day estimated dietary records, whole blood samples, and anthropometric measurements from 74 fathers were obtained. A total of 51 cord blood samples were collected and birth weight was obtained. DNA methylation status was measured using liquid chromatography-tandem mass spectrometry (global DNA (hydroxy)methylation) and pyrosequencing (IGF2 DMR methylation). Paternal betaine intake was positively associated with paternal global DNA hydroxymethylation (0.028% per 100 mg betaine increase, 95% CI: 0.003, 0.053, P=0.03) and cord blood global DNA methylation (0.679% per 100 mg betaine increase, 95% CI: 0.057, 1.302, P=0.03). Paternal methionine intake was positively associated with CpG1 (0.336% per 100 mg methionine increase, 95% CI: 0.103, 0.569, P=0.006), and mean CpG (0.201% per 100 mg methionine increase, 95% CI: 0.001, 0.402, P=0.049) methylation of the IGF2 DMR in cord blood. Further, a negative association between birth weight/birth weight-for-gestational age z-score and paternal betaine/methionine intake was found. In addition, a positive association between choline and birth weight/birth weight-for-gestational age z-score was also observed. Our data indicate a potential impact of paternal methyl-group donor intake on paternal global DNA hydroxymethylation, offspring global and IGF2 DMR DNA methylation, and prenatal growth.

Entities:  

Keywords:  IGF2 DMR methylation; global DNA hydroxymethylation; global DNA methylation; methyl-group donor

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Year:  2017        PMID: 28260562     DOI: 10.1017/S2040174417000046

Source DB:  PubMed          Journal:  J Dev Orig Health Dis        ISSN: 2040-1744            Impact factor:   2.401


  3 in total

Review 1.  Paternal Folate Status and Sperm Quality, Pregnancy Outcomes, and Epigenetics: A Systematic Review and Meta-Analysis.

Authors:  Jeffrey Hoek; Régine P M Steegers-Theunissen; Sten P Willemsen; Sam Schoenmakers
Journal:  Mol Nutr Food Res       Date:  2020-02-20       Impact factor: 5.914

2.  Mapping the past, present and future research landscape of paternal effects.

Authors:  Joanna Rutkowska; Malgorzata Lagisz; Russell Bonduriansky; Shinichi Nakagawa
Journal:  BMC Biol       Date:  2020-11-27       Impact factor: 7.431

3.  Paternal low protein diet and the supplementation of methyl-donors impact fetal growth and placental development in mice.

Authors:  Hannah L Morgan; Arwa Aljumah; Charlène Rouillon; Adam J Watkins
Journal:  Placenta       Date:  2020-10-17       Impact factor: 3.481

  3 in total

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