Responses of bovine early embryos to S-adenosyl methionine supplementation in culture

HA Shojaei Saadi, D Gagné, É Fournier… - …, 2016 - Taylor & Francis
HA Shojaei Saadi, D Gagné, É Fournier, LM Baldoceda Baldeon, MA Sirard, C Robert
Epigenomics, 2016Taylor & Francis
Aim: There is a growing concern about the potential adverse effects of high dose folic acid
(FA) supplementation before and during pregnancy. FA metabolism generates S-adenosyl
methionine (SAM) which is an important cofactor of epigenetic programming. We sought to
assess the impact of a large dose of SAM on early embryo development. Materials &
methods: In vitro cultured bovine embryos were treated with SAM from the eight-cell stage to
the blastocyst stage. In addition to the phenotype, the genome-wide epigenetic and …
Aim
There is a growing concern about the potential adverse effects of high dose folic acid (FA) supplementation before and during pregnancy. FA metabolism generates S-adenosyl methionine (SAM) which is an important cofactor of epigenetic programming. We sought to assess the impact of a large dose of SAM on early embryo development.
Materials & methods
In vitro cultured bovine embryos were treated with SAM from the eight-cell stage to the blastocyst stage. In addition to the phenotype, the genome-wide epigenetic and transcription profiles were analyzed.
Results
Treatment significantly improved embryo hatching and caused a shift in sex ratio in favor of males. SAM caused genome-wide hypermethylation mainly in exonic regions and in CpG islands. Although differentially expressed genes were associated with response to nutrients and developmental processes, no correspondence was found with the differentially methylated regions, suggesting that cellular responses to SAM treatment during early embryo development may not require DNA methylation-driven changes.
Conclusion
Since bovine embryos were not indifferent to SAM, effects of large-dose FA supplements on early embryonic development in humans cannot be ruled out.
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