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Mad2l2 在小鼠原始生殖细胞发育中的关键功能。

A critical function of Mad2l2 in primordial germ cell development of mice.

机构信息

Department of Molecular Cell Biology, Max Planck Institute for Biophysical Chemistry, Göttingen, Germany.

出版信息

PLoS Genet. 2013 Aug;9(8):e1003712. doi: 10.1371/journal.pgen.1003712. Epub 2013 Aug 29.

Abstract

The development of primordial germ cells (PGCs) involves several waves of epigenetic reprogramming. A major step is following specification and involves the transition from the stably suppressive histone modification H3K9me2 to the more flexible, still repressive H3K27me3, while PGCs are arrested in G2 phase of their cycle. The significance and underlying molecular mechanism of this transition were so far unknown. Here, we generated mutant mice for the Mad2l2 (Mad2B, Rev7) gene product, and found that they are infertile in both males and females. We demonstrated that Mad2l2 is essential for PGC, but not somatic development. PGCs were specified normally in Mad2l2(-/-) embryos, but became eliminated by apoptosis during the subsequent phase of epigenetic reprogramming. A majority of knockout PGCs failed to arrest in the G2 phase, and did not switch from a H3K9me2 to a H3K27me3 configuration. By the analysis of transfected fibroblasts we found that the interaction of Mad2l2 with the histone methyltransferases G9a and GLP lead to a downregulation of H3K9me2. The inhibitory binding of Mad2l2 to Cyclin dependent kinase 1 (Cdk1) could arrest the cell cycle in the G2 phase, and also allowed another histone methyltransferase, Ezh2, to upregulate H3K27me3. Together, these results demonstrate the potential of Mad2l2 in the regulation of both cell cycle and the epigenetic status. The function of Mad2l2 is essential in PGCs, and thus of high relevance for fertility.

摘要

原始生殖细胞 (PGC) 的发育涉及几个表观遗传重编程波。一个主要步骤是在指定之后发生,涉及从稳定抑制性组蛋白修饰 H3K9me2 到更灵活、仍然抑制性的 H3K27me3 的转变,而 PGC 则在其周期的 G2 期停滞。到目前为止,这种转变的意义和潜在分子机制尚不清楚。在这里,我们生成了 Mad2l2 (Mad2B,Rev7) 基因产物的突变小鼠,并发现它们在雄性和雌性中均不育。我们证明 Mad2l2 对 PGC 但对体细胞发育是必不可少的。Mad2l2(-/-) 胚胎中的 PGC 正常指定,但在随后的表观遗传重编程阶段通过细胞凋亡被消除。大多数敲除 PGC 未能在 G2 期停滞,并且未能从 H3K9me2 切换到 H3K27me3 构型。通过对转染的成纤维细胞的分析,我们发现 Mad2l2 与组蛋白甲基转移酶 G9a 和 GLP 的相互作用导致 H3K9me2 的下调。Mad2l2 对细胞周期蛋白依赖性激酶 1 (Cdk1) 的抑制结合可使细胞周期在 G2 期停滞,并且还允许另一种组蛋白甲基转移酶 Ezh2 上调 H3K27me3。总之,这些结果表明 Mad2l2 在调节细胞周期和表观遗传状态方面的潜力。Mad2l2 在 PGC 中的功能是必不可少的,因此与生育能力密切相关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/576c/3757036/9da9588fe0b4/pgen.1003712.g001.jpg

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