College of Life Sciences, Beijing Normal University, Beijing, China.
National Laboratory of Biomacromolecules, CAS Center for Excellence in Biomacromolecules, Institute of Biophysics, Chinese Academy of Sciences, Beijing, China.
Nature. 2018 Dec;564(7734):136-140. doi: 10.1038/s41586-018-0751-5. Epub 2018 Nov 28.
Postnatal growth of mammalian oocytes is accompanied by a progressive gain of DNA methylation, which is predominantly mediated by DNMT3A, a de novo DNA methyltransferase. Unlike the genome of sperm and most somatic cells, the oocyte genome is hypomethylated in transcriptionally inert regions. However, how such a unique feature of the oocyte methylome is determined and its contribution to the developmental competence of the early embryo remains largely unknown. Here we demonstrate the importance of Stella, a factor essential for female fertility, in shaping the oocyte methylome in mice. Oocytes that lack Stella acquire excessive DNA methylation at the genome-wide level, including in the promoters of inactive genes. Such aberrant hypermethylation is partially inherited by two-cell-stage embryos and impairs zygotic genome activation. Mechanistically, the loss of Stella leads to ectopic nuclear accumulation of the DNA methylation regulator UHRF1, which results in the mislocalization of maintenance DNA methyltransferase DNMT1 in the nucleus. Genetic analysis confirmed the primary role of UHRF1 and DNMT1 in generating the aberrant DNA methylome in Stella-deficient oocytes. Stella therefore safeguards the unique oocyte epigenome by preventing aberrant de novo DNA methylation mediated by DNMT1 and UHRF1.
哺乳动物卵母细胞的出生后生长伴随着 DNA 甲基化的逐渐增加,这主要由从头 DNA 甲基转移酶 DNMT3A 介导。与精子和大多数体细胞的基因组不同,卵母细胞基因组在转录惰性区域呈低甲基化状态。然而,卵母细胞甲基组的这种独特特征是如何确定的,以及它对早期胚胎发育能力的贡献在很大程度上仍然未知。在这里,我们证明了 Stella 在塑造小鼠卵母细胞甲基组中的重要性,Stella 是一种对雌性生育能力至关重要的因子。缺乏 Stella 的卵母细胞在全基因组水平上获得过多的 DNA 甲基化,包括非活性基因的启动子。这种异常的超甲基化部分被二细胞期胚胎遗传,并损害合子基因组激活。从机制上讲,Stella 的缺失导致 DNA 甲基化调节因子 UHRF1 的核异位积累,从而导致维持性 DNA 甲基转移酶 DNMT1 在核内的定位错误。遗传分析证实了 UHRF1 和 DNMT1 在生成 Stella 缺陷型卵母细胞中异常 DNA 甲基组中的主要作用。因此,Stella 通过防止由 DNMT1 和 UHRF1 介导的异常从头 DNA 甲基化来保护独特的卵母细胞表观基因组。