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Dynamic methylation adjustment and counting as part of imprinting mechanisms.

机译:动态甲基化调整和计数是印迹机制的一部分。

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摘要

Monoallelic expression in diploid mammalian cells appears to be a widespread phenomenon, with the most studied examples being X-chromosome inactivation in eutherian female cells and genomic imprinting in the mouse and human. Silencing and methylation of certain sites on one of the two alleles in somatic cells is specific with respect to parental source for imprinted genes and random for X-linked genes. We report here evidence indicating that: (i) differential methylation patterns of imprinted genes are not simply copied from the gametes, but rather established gradually after fertilization; (ii) very similar methylation patterns are observed for diploid, tetraploid, parthenogenic, and androgenic preimplantation mouse embryos, as well as parthenogenic and androgenic mouse embryonic stem cells; (iii) haploid parthenogenic embryos do not show methylation adjustment as seen in diploid or tetraploid embryos, but rather retain the maternal pattern. These observations suggest that differential methylation in imprinted genes is achieved by a dynamic process that senses gene dosage and adjusts methylation similar to X-chromosome inactivation.
机译:二倍体哺乳动物细胞中的单等位基因表达似乎是一种普遍的现象,研究最多的例子是在以太性雌性细胞中X染色体失活以及在小鼠和人类中的基因组印迹。体细胞中两个等位基因之一上某些位点的沉默和甲基化对于印迹基因的亲本来源是特异性的,而对于X连锁基因则是随机的。我们在这里报告的证据表明:(i)印迹基因的差异甲基化模式不是简单地从配子复制而来,而是在受精后逐渐建立的; (ii)在二倍体,四倍体,孤雌和雄激素植入前小鼠胚胎以及孤雌和雄激素小鼠胚胎干细胞中观察到非常相似的甲基化模式; (iii)单倍体孤雌生殖胚胎在二倍体或四倍体胚胎中没有显示甲基化调节,而是保留了母体模式。这些观察结果表明,印记基因中的差异甲基化是通过动态过程实现的,该过程可以感应基因剂量并像X染色体失活一样调节甲基化。

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