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受精时补充线粒体 DNA 对猪囊胚前基因表达谱的影响。

The effects of mitochondrial DNA supplementation at the time of fertilization on the gene expression profiles of porcine preimplantation embryos.

机构信息

Centre for Genetic Diseases, Hudson Institute of Medical Research, Clayton, Australia.

Centre for Genetic Diseases, Department of Molecular and Translational Science, Monash University, Clayton, Australia.

出版信息

Mol Reprod Dev. 2018 Jun;85(6):490-504. doi: 10.1002/mrd.22985. Epub 2018 May 3.

Abstract

Mitochondrial DNA (mtDNA) deficient metaphase II porcine oocytes are less likely to fertilize and more likely to arrest during preimplantation development. However, they can be supplemented with autologous populations of mitochondria at the time of fertilization, which significantly increases mtDNA copy number by the 2-cell stage due to the modulation of DNA methylation at a CpG island of the gene encoding the mtDNA-specific polymerase, POLG, and promotes preimplantation development. Although mitochondrial supplementation does not increase development rates or mtDNA copy number in oocytes with normal levels of mtDNA copy number, we tested whether this approach would also impact on chromosomal gene expression patterns in these oocytes at each stage of preimplantation development. Here, we have compared the gene expression profiles of embryos produced by mitochondrial supplementation at the time of fertilization with embryos produced by in vitro fertilization (IVF) using a panel of genes associated with different stages of preimplantation development. When compared to IVF-derived embryos, 27 (34%) genes were differentially expressed in supplemented embryos but this was restricted to one or two developmental stages. However, 53 (66%) genes were comparably expressed across all six stages and by the blastocyst stage 4 (5%) genes were differentially expressed. We conclude that additional copies of mtDNA can induce changes in gene expression at various stages of preimplantation development with the first changes occurring prior to maternal-to-zygotic transition (MZT). However, these changes appear to be transitory suggesting that some genomic resetting is taking place.

摘要

线粒体 DNA(mtDNA)缺陷的中期猪卵母细胞受精的可能性较小,在植入前发育过程中更有可能停滞。然而,它们可以在受精时用自身的线粒体群体进行补充,由于编码 mtDNA 特异性聚合酶 POLG 的基因的 CpG 岛的 DNA 甲基化的调节,mtDNA 拷贝数在 2 细胞期显著增加,并促进植入前发育。尽管线粒体补充不会增加 mtDNA 拷贝数正常的卵母细胞的发育率或 mtDNA 拷贝数,但我们测试了这种方法是否也会影响这些卵母细胞在植入前发育的每个阶段的染色体基因表达模式。在这里,我们比较了在受精时进行线粒体补充的胚胎和体外受精(IVF)产生的胚胎的基因表达谱,使用了一组与植入前发育不同阶段相关的基因。与 IVF 衍生的胚胎相比,补充胚胎中有 27(34%)个基因表达差异,但仅限于一个或两个发育阶段。然而,53(66%)个基因在所有六个阶段都有可比的表达,到囊胚阶段有 4(5%)个基因表达差异。我们得出结论,额外的 mtDNA 拷贝可以在植入前发育的各个阶段诱导基因表达的变化,最早的变化发生在母体到合子的过渡(MZT)之前。然而,这些变化似乎是短暂的,表明正在进行一些基因组重置。

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