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非洲爪蟾 Nanos1 对于原始生殖细胞中内胚层基因表达和凋亡的抑制是必需的。

Xenopus Nanos1 is required to prevent endoderm gene expression and apoptosis in primordial germ cells.

机构信息

Department of Cell Biology, University of Miami School of Medicine, 1011 NW 15th St, Miami, FL 33136, USA.

出版信息

Development. 2012 Apr;139(8):1476-86. doi: 10.1242/dev.079608. Epub 2012 Mar 7.

Abstract

Nanos is expressed in multipotent cells, stem cells and primordial germ cells (PGCs) of organisms as diverse as jellyfish and humans. It functions together with Pumilio to translationally repress targeted mRNAs. Here we show by loss-of-function experiments that Xenopus Nanos1 is required to preserve PGC fate. Morpholino knockdown of maternal Nanos1 resulted in a striking decrease in PGCs and a loss of germ cells from the gonads. Lineage tracing and TUNEL staining reveal that Nanos1-deficient PGCs fail to migrate out of the endoderm. They appear to undergo apoptosis rather than convert to normal endoderm. Whereas normal PGCs do not become transcriptionally active until neurula, Nanos1-depleted PGCs prematurely exhibit a hyperphosphorylated RNA polymerase II C-terminal domain at the midblastula transition. Furthermore, they inappropriately express somatic genes characteristic of endoderm regulated by maternal VegT, including Xsox17α, Bix4, Mixer, GATA4 and Edd. We further demonstrate that Pumilio specifically binds VegT RNA in vitro and represses, along with Nanos1, VegT translation within PGCs. Repressed VegT RNA in wild-type PGCs is significantly less stable than VegT in Nanos1-depleted PGCs. Our data indicate that maternal VegT RNA is an authentic target of Nanos1/Pumilio translational repression. We propose that Nanos1 functions to translationally repress RNAs that normally specify endoderm and promote apoptosis, thus preserving the germline.

摘要

Nanos 在从水母到人类等各种生物体的多能细胞、干细胞和原始生殖细胞(PGCs)中表达。它与 Pumilio 一起发挥作用,翻译抑制靶向 mRNA。在这里,我们通过功能丧失实验表明,非洲爪蟾 Nanos1 对于维持 PGC 命运是必需的。母体 Nanos1 的 morpholino 敲低导致 PGCs 数量显著减少,性腺中的生殖细胞丢失。谱系追踪和 TUNEL 染色显示,Nanos1 缺陷的 PGCs 无法从内胚层迁移出来。它们似乎经历了细胞凋亡,而不是转化为正常的内胚层。而正常的 PGCs 直到神经胚期才开始转录激活,Nanos1 耗尽的 PGCs 在中胚层转换时过早地表现出高度磷酸化的 RNA 聚合酶 II C 末端结构域。此外,它们异常表达由母体 VegT 调节的具有体细胞特征的内胚层基因,包括 Xsox17α、Bix4、Mixer、GATA4 和 Edd。我们进一步证明,Pumilio 特异性地在体外结合 VegT RNA,并与 Nanos1 一起抑制 PGCs 中的 VegT 翻译。野生型 PGCs 中的受抑制的 VegT RNA 比 Nanos1 耗尽的 PGCs 中的 VegT RNA 稳定性显著降低。我们的数据表明,母体 VegT RNA 是 Nanos1/Pumilio 翻译抑制的真实靶标。我们提出,Nanos1 的功能是翻译抑制通常指定内胚层并促进细胞凋亡的 RNA,从而保护生殖细胞系。

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