期刊论文详细信息
Data in Brief
DNA methylation dataset of bovine embryonic fibroblast cells treated with epigenetic modifiers and divergent energy supply
Matthew S. Crouse1  Wellison J.S. Diniz2  Kate J. Claycombe-Larson3  Carl R. Dahlen3  Pawel P. Borowicz3  Alison K. Ward3  Amanda K. Lindholm-Perry4  Joel S. Caton5  Lawrence P. Reynolds5 
[1] Corresponding author.;Department of Animal Sciences, Auburn University, Auburn, AL, 36849. United States;Department of Animal Sciences, North Dakota State University, Fargo, 58108. United States;Grand Forks Human Nutrition Research Center, USDA, ARS, ND, 58203. United States;U.S. Meat Animal Research Center, Clay Center, USDA, ARS, NE 68933. United States;
关键词: Embryonic fibroblasts;    Epigenetics;    Fetal programming;    Methylation;    One-carbon metabolites;   
DOI  :  
来源: DOAJ
【 摘 要 】

Fetal programming is established early in life, likely through epigenetic mechanisms that control gene expression. Micronutrients can act as epigenetic modifiers (EM) by modulating the genome through mechanisms that include DNA methylation and post-translational modification of chromatin. Among the EM, methionine, choline, folate, and vitamin B12 have been suggested as key players of DNA methylation. However, the effects of supplementing these four EM, involved in the methionine folate cycle on DNA methylation, are still under investigation. This manuscript provides the genome-wide DNA methylation dataset (GSE180362) of bovine embryonic fibroblast cells exposed to different supplementation levels of glucose and methionine, choline, folate, and vitamin B12 (collectively named as Epigenetic Modifiers - EM). The DNA methylation was measured using MSP-I digestion and Reduced Representation Bisulfite Sequencing. Bioinformatics analyses included data quality control, read mapping, methylation calling, and differential methylation analyses. Supplementary file S1 and data analysis codes are within this article. To our knowledge, this is the first dataset investigating the effects of four EM in bovine embryonic fibroblast DNA methylation profiles. Furthermore, this data and its findings provide information on putative candidate genes responsive to DNA methylation due to EM supplementation.

【 授权许可】

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