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The RNA-binding protein DND1 acts sequentially as a negative regulator of pluripotency and a positive regulator of epigenetic modifiers required for germ cell reprogramming

机译:RNA结合蛋白DND1顺序地作为多能性的负调节剂和生殖细胞重编程所需的表观遗传改性剂的正调节剂

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The adult spermatogonial stem cell population arises from pluripotent primordial germ cells (PGCs) that enter the fetal testis around embryonic day (E)10.5. PGCs undergo rapid mitotic proliferation, then enter prolonged cell cycle arrest (G1/G0), during which they transition to pro-spermatogonia. In mice homozygous for the Ter mutation in the RNA-binding protein Dnd1 ( Dnd1~(Ter/Ter) ), many male germ cells (MGCs) fail to enter G1/G0 and instead form teratomas: tumors containing many embryonic cell types. To investigate the origin of these tumors, we sequenced the MGC transcriptome in Dnd1~(Ter/Ter) mutants at E12.5, E13.5 and E14.5, immediately prior to teratoma formation, and correlated this information with DO-RIP-Seq-identified DND1 direct targets. Consistent with previous results, we found DND1 controls downregulation of many genes associated with pluripotency and active cell cycle, including mTor, Hippo and Bmp/Nodal signaling pathway elements. However, DND1 targets also include genes associated with male differentiation, including a large group of chromatin regulators activated in wild-type but not mutant MGCs during the E13.5 and E14.5 transition. Results suggest multiple DND1 functions and link DND1 to initiation of epigenetic modifications in MGCs.
机译:成年精术干细胞群来自多能原始生殖细胞(PGC),其在胚胎天(E)10.5周围进入胎儿睾丸。 PGCs经历快速的有丝分裂性,然后进入延长的细胞周期骤停(G1 / G0),在此期间它们转变为Pro-Permatogonia。在RNA结合蛋白DND1(DND1〜(TER / TER)中的TER突变的小鼠中,许多雄性生殖细胞(MGCs)未进入G1 / G0,而是形成畸胎瘤:含有许多胚胎细胞类型的肿瘤。为了研究这些肿瘤的来源,我们在畸胎瘤形成之前,在E12.5,E13.5和E14.5的DND1〜(TER / TER)突变体中测序MGC转录组,并将这些信息与DO-RIP相关联SEQ鉴定的DND1直接目标。我们与先前的结果一致,我们发现DND1对多能性和活性细胞周期相关的许多基因的控制,包括MTOR,HIPPO和BMP / Nodal信号传导路径元件。然而,DND1靶点还包括与男性分化相关的基因,包括在E13.5和E14.5期间在野生型但不突变的MGC中激活的大量染色质调节剂。结果表明多个DND1功能和链接DND1以启动MGCS中的表观遗传修饰。

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