| Literature DB >> 30707961 |
Zubing Cao1, Meiling Zhang2, Tengteng Xu1, Zhen Chen1, Xu Tong1, Dandan Zhang1, Yiqing Wang1, Ling Zhang1, Di Gao1, Lei Luo1, Ibrar Muhammad Khan1, Yunhai Zhang3.
Abstract
Accurate reprogramming of DNA methylation occurring in preimplantation embryos is critical for normal development of both fetus and placenta. Environmental stresses imposed on oocytes usually cause the abnormal DNA methylation reprogramming of early embryos. However, whether oocyte vitrification alters the reprogramming of DNA methylation (5 mC) and its derivatives in mouse preimplantation embryo development remains largely unknown. Here, we found that the rate of cleavage and blastocyst formation of embryos produced by IVF of vitrified matured oocytes was significantly lower than that in control counterparts, but the quality of blastocysts was not impaired by oocyte vitrification. Additionally, although vitrification neither altered the dynamic changes of 5-hydroxymethylcytosine (5hmC) and 5-formylcytosine (5 fC) before 4-cell stage nor affected the levels of 5 mC and 5-carboxylcytosine (5caC) throughout the preimplantation development, vitrification significantly reduced the levels of 5hmC and 5 fC from 8-cell stage onwards. Correspondingly, vitrification did not alter the expression patterns of Tet3 in preimplantation embryos but apparently reduced the expression levels of Tet1 in 4-cell and 8-cell embryos and increased the expression levels of Tet2 at morula stage. Taken together, these results demonstrate that oocyte vitrification perturbs DNA methylation reprogramming in mouse preimplantation embryo development.Entities:
Keywords: DNA methylation; MII oocyte; Mouse; Reprogramming; Vitrification
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Year: 2019 PMID: 30707961 DOI: 10.1016/j.cryobiol.2019.01.012
Source DB: PubMed Journal: Cryobiology ISSN: 0011-2240 Impact factor: 2.487