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DND1 通过遗传背景调节雄性生殖细胞周期阻滞和分化。

Regulation of male germ cell cycle arrest and differentiation by DND1 is modulated by genetic background.

机构信息

Department of Cell Biology, Duke University, Durham, NC 27710, USA.

出版信息

Development. 2011 Jan;138(1):23-32. doi: 10.1242/dev.057000. Epub 2010 Nov 29.

Abstract

Human germ cell tumors show a strong sensitivity to genetic background similar to Dnd1(Ter/Ter) mutant mice, where testicular teratomas arise only on the 129/SvJ genetic background. The introduction of the Bax mutation onto mixed background Dnd1(Ter/Ter) mutants, where teratomas do not typically develop, resulted in a high incidence of teratomas. However, when Dnd1(Ter/Ter); Bax(-/-) double mutants were backcrossed to C57BL/6J, no tumors arose. Dnd1(Ter/Ter) germ cells show a strong downregulation of male differentiation genes including Nanos2. In susceptible strains, where teratomas initiate around E15.5-E17.5, many mutant germ cells fail to enter mitotic arrest in G0 and do not downregulate the pluripotency markers NANOG, SOX2 and OCT4. We show that DND1 directly binds a group of transcripts that encode negative regulators of the cell cycle, including p27(Kip1) and p21(Cip)(1). P27(Kip1) and P21(Cip1) protein are both significantly decreased in Dnd1(Ter/Ter) germ cells on all strain backgrounds tested, strongly suggesting that DND1 regulates mitotic arrest in male germ cells through translational regulation of cell cycle genes. Nonetheless, in C57BL/6J mutants, germ cells arrest prior to M-phase of the cell cycle and downregulate NANOG, SOX2 and OCT4. Consistent with their ability to rescue cell cycle arrest, C57BL/6J germ cells overexpress negative regulators of the cell cycle relative to 129/SvJ. This work suggests that reprogramming of pluripotency in germ cells and prevention of tumor formation requires cell cycle arrest, and that differences in the balance of cell cycle regulators between 129/SvJ and C57BL/6 might underlie differences in tumor susceptibility.

摘要

人类生殖细胞肿瘤对遗传背景的敏感性很强,与 Dnd1(Ter/Ter)突变小鼠相似,在这种小鼠中,睾丸畸胎瘤仅在 129/SvJ 遗传背景下出现。将 Bax 突变引入混合背景的 Dnd1(Ter/Ter)突变体中,通常不会导致畸胎瘤的发生,但会导致畸胎瘤的发生率很高。然而,当 Dnd1(Ter/Ter);Bax(-/-)双突变体回交至 C57BL/6J 时,没有肿瘤发生。Dnd1(Ter/Ter)生殖细胞表现出强烈的下调雄性分化基因,包括 Nanos2。在易感品系中,畸胎瘤在 E15.5-E17.5 左右开始出现,许多突变生殖细胞未能进入 G0 期有丝分裂停滞,并且没有下调多能性标记物 NANOG、SOX2 和 OCT4。我们表明,DND1 直接结合一组编码细胞周期负调控因子的转录本,包括 p27(Kip1)和 p21(Cip)(1)。在所有测试的品系背景下,Dnd1(Ter/Ter)生殖细胞中的 p27(Kip1)和 P21(Cip1)蛋白均显著减少,这强烈表明 DND1 通过细胞周期基因的翻译调控来调节雄性生殖细胞的有丝分裂停滞。尽管如此,在 C57BL/6J 突变体中,生殖细胞在细胞周期的 M 期之前停滞,并下调 NANOG、SOX2 和 OCT4。与它们能够挽救细胞周期停滞一致,C57BL/6J 生殖细胞相对于 129/SvJ 过度表达细胞周期负调控因子。这项工作表明,生殖细胞中多能性的重编程和肿瘤形成的预防需要细胞周期停滞,并且 129/SvJ 和 C57BL/6 之间细胞周期调节剂平衡的差异可能是肿瘤易感性差异的基础。

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