Hayward B E, De Vos M, Judson H, Hodge D, Huntriss J, Picton H M, Sheridan E, Bonthron D T
Molecular Medicine Unit, University of Leeds, Leeds LS9 7TF, UK.
BMC Genet. 2003 Jan 20;4:2. doi: 10.1186/1471-2156-4-2.
Differential methylation of the two alleles is a hallmark of imprinted genes. Correspondingly, loss of DNA methyltransferase function results in aberrant imprinting and abnormal post-fertilization development. In the mouse, mutations of the oocyte-specific isoform of the DNA methyltransferase Dnmt1 (Dnmt1o) and of the methyltransferase-like Dnmt3L gene result in specific failures of imprint establishment or maintenance, at multiple loci. We have previously shown in humans that an analogous inherited failure to establish imprinting at multiple loci in the female germline underlies a rare phenotype of recurrent hydatidiform mole.
We have identified a human homologue of the murine Dnmt1o and assessed its pattern of expression. Human DNMT1o mRNA is detectable in mature oocytes and early fertilized embryos but not in any somatic tissues analysed. The somatic isoform of DNMT1 mRNA, in contrast, is not detectable in human oocytes. In the previously-described family with multi-locus imprinting failure, mutation of DNMT1o and of the other known members of this gene family has been excluded.
Mutation of the known DNMT genes does not underlie familial hydatidiform mole, at least in the family under study. This suggests that trans-acting factors other than the known methyltransferases are required for imprint establishment in humans, a concept that has indirect support from recent biochemical studies of DNMT3L.
两个等位基因的差异甲基化是印记基因的一个标志。相应地,DNA甲基转移酶功能的丧失会导致印记异常和受精后发育异常。在小鼠中,DNA甲基转移酶Dnmt1的卵母细胞特异性同工型(Dnmt1o)和类甲基转移酶Dnmt3L基因的突变会导致多个位点印记建立或维持的特定失败。我们之前在人类中已经表明,女性生殖系中多个位点印记建立的类似遗传性失败是复发性葡萄胎这种罕见表型的基础。
我们鉴定出了小鼠Dnmt1o的人类同源物,并评估了其表达模式。人类DNMT1o mRNA在成熟卵母细胞和早期受精卵中可检测到,但在所分析的任何体细胞组织中均未检测到。相比之下,DNMT1 mRNA的体细胞同工型在人类卵母细胞中未检测到。在先前描述的多位点印记失败的家族中,已排除DNMT1o和该基因家族其他已知成员的突变。
至少在所研究的家族中,已知DNMT基因的突变不是家族性葡萄胎的基础。这表明人类印记建立需要已知甲基转移酶以外的反式作用因子,这一概念得到了最近对Dnmt3L的生化研究的间接支持。