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[人类胚胎发育早期染色体镶嵌现象中1型反转录转座子的甲基化状态]

[Methylation status of line-1 retrotransposon in chromosomal mosaicism during the early stages of human embryonic development].

作者信息

Vasil'ev S A, Tolmacheva E N, Kashevarova A A, Sazhenova E A, Lebedev I N

出版信息

Mol Biol (Mosk). 2015 Jan-Feb;49(1):165-74.

Abstract

Early stages of human embryonic development are characterized by spatio-temporal coincidence of events of total epigenetic genome reprogramming and elevated level of mosaic forms of numerical chromosome abnormalities. It is possible that the abnormal reprogramming of various regions of the genome can lead to violations of local epigenetic chromatin organization and gene expression, affecting the correct chromosome segregation during mitosis. In this study, a comparative analysis of the methylation index of LINE-1 retrotransposon, which is largely reflecting the methylation profile of the genome, is performed in placental tissues of spontaneous abortions with complete and mosaic forms of aneuploidy, and with a normal karyotype, as well as in the control group of induced abortions of the first trimester of pregnancy. It was shown that extraembryonic mesoderm and chorionic cytotrophoblast of spontaneous abortions with chromosomal mosaicism are characterized by the highest index of LINE-1 methylation among all groups studied. At the same time excessive hypomethylation of transposable genetic element recorded in spontaneous abortions with normal karyotype. It is suggested that violations of parental genomes demethylation during epigenetic reprogramming at preimplantation stages of development may be associated with an increased frequency of mitotic errors in chromosome segregation, leading to the formation of a mosaic karyotype.

摘要

人类胚胎发育的早期阶段,其特征是全基因组表观遗传重编程事件与染色体数目异常的嵌合形式水平升高在时空上同时发生。基因组各个区域的异常重编程可能会导致局部表观遗传染色质组织和基因表达的紊乱,进而影响有丝分裂期间染色体的正确分离。在本研究中,对长散在核元件1(LINE-1)逆转座子的甲基化指数进行了比较分析,该指数在很大程度上反映了基因组的甲基化谱,分析对象包括具有非整倍体完全型和嵌合型以及正常核型的自然流产胎盘组织,以及妊娠早期人工流产的对照组。结果显示,在所有研究组中,具有染色体嵌合现象的自然流产的胚外中胚层和绒毛细胞滋养层的LINE-1甲基化指数最高。与此同时,在具有正常核型的自然流产中记录到转座遗传元件过度低甲基化。研究表明,在发育的植入前阶段,表观遗传重编程过程中亲本基因组去甲基化的异常可能与染色体分离过程中有丝分裂错误频率增加有关,从而导致嵌合核型的形成。

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