Recent studies suggest that IVF and assisted reproduction technologies (ART) may result in abnormal genomic imprinting, leading to an increased frequency of Angelman syndrome (AS) and Beckwith-Weidemann syndrome (BWS) in IVF children. To learn how ART might alter the epigenome, we examined morulas and blastocysts derived from C57BL/6J X M. spretus F1 mice conceived in vivo and in vitro and determined the allelic expression of four imprinted genes: Igf2, H19, Cdkn1c and Slc221L. IVF-derived mouse embryos that were cultured in human tubal fluid (HTF) (Quinn's advantage) media displayed a high frequency of aberrant H19 imprinting, whereas in vivo and IVF embryos showed normal maternal expression of Cdkn1c and normal biallelic expression of Igf2 and Slc221L. Embryonic stem (ES) cells derived from IVF blastocysts also showed abnormal Igf2/H19 imprinting. Allele-specific bisulphite PCR reveals abnormal DNA methylation at a CCCTC-binding factor (CTCF) site in the imprinting control region (ICR), as the normally unmethylated maternal allele acquired a paternal methylation pattern. Chromatin immunoprecipitation (ChIP) assays indicate an increase of lysine 4 methylation (dimethyl Lys4-H3) on the paternal chromatin and a gain in lysine 9 methylation (trimethyl Lys9-H3) on the maternal chromatin at the same CTCF-binding site. Our results indicate that de novo DNA methylation on the maternal allele and allele-specific acquisition of histone methylation lead to aberrant Igf2/H19 imprinting in IVF-derived ES cells. We suggest that ART, which includes IVF and various culture media, might cause imprinting errors that involve both aberrant DNA methylation and histone methylation at an epigenetic switch of the Igf2-H19 gene region.
Molecular human reproduction. 2005 Sep;11(9):631-40. doi: 10.1093/molehr/gah230 Q13.52025
IVF results in de novo DNA methylation and histone methylation at an Igf2-H19 imprinting epigenetic switch
体外受精导致Igf2-H19印迹表观遗传转换的从头DNA甲基化和组蛋白甲基化 翻译改进
作者单位 +展开
作者单位
DOI: 10.1093/molehr/gah230 PMID: 16219628
摘要 Ai翻译
相关内容
-
Mechanistic and functional links between histone methylation and DNA methylation
组蛋白甲基化和DNA甲基化之间的机制与功能联系
Progress in molecular biology and translational science. 2011:101:335-48.
-
Aberrant DNA and histone methylation during zygotic genome activation in goat cloned embryos
山羊克隆胚胎发育中合子基因组激活过程中的DNA和组蛋白异常甲基化规律研究
Theriogenology. 2020 May:148:27-36.
-
Regulation and function of DNA and histone methylations
DNA和组蛋白甲基化的作用与调控
Current pharmaceutical design. 2013;19(4):719-33.
-
[The relationship of DNA methylation and histone methylation]
DNA甲基化与组蛋白甲基化的相互关系
Yi chuan = Hereditas. 2004 Mar;26(2):267-70.
-
Nucleosome-interacting proteins regulated by DNA and histone methylation
受DNA和组蛋白甲基化调节的染色质交互蛋白质
Cell. 2010 Oct 29;143(3):470-84.
-
Alternation of histone and DNA methylation in human atherosclerotic carotid plaques
人颈动脉斑块中组蛋白和DNA甲基化的交替变化
Thrombosis and haemostasis. 2015 Aug;114(2):390-402.
-
Epigenetic small molecule modulators of histone and DNA methylation
组蛋白和DNA甲基化的表观遗传小分子调节剂
Current opinion in chemical biology. 2018 Aug:45:73-85.
-
METHIONINE ADENOSYLTRANSFERASE4 Mediates DNA and Histone Methylation
蛋氨酸腺苷转移酶4介导DNA和组蛋白甲基化
Plant physiology. 2018 Jun;177(2):652-670.