Establishment of DNA methylation patterns of the Fibrillin1 (FBN1) gene in porcine embryos and tissues

Yoshikazu Arai, K. Umeyama, Kenta Takeuchi, Natsumi Okazaki, Naomi Hichiwa, S. Yashima, K. Nakano, H. Nagashima, J. Ohgane
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引用次数: 5

Abstract

DNA methylation in transcriptional regulatory regions is crucial for gene expression. The DNA methylation status of the edges of CpG islands, called CpG island shore, is involved in tissue/cell-type-specific gene expression. Haploinsufficiency diseases are caused by inheritance of one mutated null allele and are classified as autosomal dominant. However, in the same pedigree, phenotypic variances are observed despite the inheritance of the identical mutated null allele, including Fibrillin1 (FBN1), which is responsible for development of the haploinsufficient Marfan disease. In this study, we examined the relationship between gene expression and DNA methylation patterns of the FBN1 CpG island shore focusing on transcriptionally active hypomethylated alleles (Hypo-alleles). No difference in the DNA methylation level of FBN1 CpG island shore was observed in porcine fetal fibroblast (PFF) and the liver, whereas FBN1 expression was higher in PFF than in the liver. However, Hypo-allele ratio of the FBN1 CpG island shore in PFF was higher than that in the liver, indicating that Hypo-allele ratio of the FBN1 CpG island shore likely correlated with FBN1 expression level. In addition, oocyte-derived DNA hypermethylation in preimplantation embryos was erased until the blastocyst stage, and re-methylation of the FBN1 CpG island shore was observed with prolonged in vitro culture of blastocysts. These results suggest that the establishment of the DNA methylation pattern within the FBN1 CpG island shore occurs after the blastocyst stage, likely during organogenesis. In conclusion, Hypo-allele ratios of the FBN1 CpG island shore correlated with FBN1 expression levels in porcine tissues.
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猪胚胎和组织中纤原蛋白1 (FBN1)基因DNA甲基化模式的建立
转录调控区域的DNA甲基化对基因表达至关重要。CpG岛边缘的DNA甲基化状态,称为CpG岛岸,与组织/细胞类型特异性基因表达有关。单倍功能不全疾病是由一个突变的零等位基因遗传引起的,被归类为常染色体显性。然而,在同一家系中,尽管遗传了相同的突变零等位基因,包括纤颤蛋白1 (FBN1),但仍观察到表型差异,纤颤蛋白1负责单倍不足马凡病的发展。在这项研究中,我们研究了FBN1 CpG岛岸基因表达与DNA甲基化模式之间的关系,重点研究了转录活性低甲基化等位基因(Hypo-alleles)。猪胎儿成纤维细胞(PFF)和肝脏中FBN1 CpG岛岸DNA甲基化水平无显著差异,但PFF中FBN1表达高于肝脏。而FBN1 CpG岛岸在PFF中的低等位基因比例高于肝脏,提示FBN1 CpG岛岸的低等位基因比例可能与FBN1表达水平相关。此外,着床前胚胎中卵母细胞来源的DNA高甲基化在囊胚期被消除,并且随着囊胚体外培养时间的延长,可以观察到FBN1 CpG岛岸的再甲基化。这些结果表明,在FBN1 CpG岛岸边,DNA甲基化模式的建立发生在囊胚阶段之后,可能在器官发生期间。综上所述,猪FBN1 CpG岛岸的低等位基因比例与猪组织中FBN1的表达水平相关。
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