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C. elegans RNA-binding proteins PUF-8 and MEX-3 function redundantly to promote germline stem cell mitosis

机译:秀丽隐杆线虫RNA结合蛋白PUF-8和MEX-3冗余地促进种系干细胞的有丝分裂

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摘要

Maintenance of mitotically cycling germline stem cells (GSCs) is vital for continuous production of gametes. In worms and insects, signaling from surrounding somatic cells play an essential role in the maintenance of GSCs by preventing premature differentiation. In addition, germ cell proteins such as the Drosophila Pumilio and Caenorhabditis elegans FBF, both members of the PUF family translational regulators, contribute to GSC maintenance. FBF functions by suppressing GLD-1, which promotes meiotic entry. However, factors that directly promote GSC proliferation, rather than prevent differentiation, are not known. Here we show that PUF-8, another C. elegans member of the PUF family and MEX-3, a KH domain translational regulator, function redundantly to promote GSC mitosis. We find that PUF-8 protein is highly enriched in mitotic germ cells, which is similar to the expression pattern of MEX-3 described earlier. The puf-8(−) mex-3(−) double mutant gonads contain far fewer germ cells than both single mutants and wild-type. While these cells lack mitotic, meiotic and sperm markers, they retain the germ cell-specific P granules, and are capable of gametogenesis if GLP-1, which normally blocks meiotic entry, is removed. Significantly, we find that at least one of these two proteins is essential for germ cell proliferation even in meiotic entry-defective mutants, which otherwise produce germ cell tumors. We conclude PUF-8 and MEX-3 contribute to GSC maintenance by promoting mitotic proliferation rather than by blocking meiotic entry.
机译:维持有丝分裂周期的生殖系干细胞(GSC)对于持续生产配子至关重要。在蠕虫和昆虫中,周围体细胞的信号传导通过防止过早分化,在维持GSC中起着至关重要的作用。此外,PUF家族翻译调节子的果蝇果蝇和秀丽隐杆线虫FBF等生殖细胞蛋白也有​​助于GSC的维持。 FBF通过抑制促进减数分裂进入的GLD-1发挥功能。但是,尚不清楚直接促进GSC增殖而不是阻止其分化的因素。在这里,我们显示PUF家族的另一个秀丽隐杆线虫成员PUF-8和KH域翻译调节子MEX-3冗余地促进了GSC有丝分裂。我们发现PUF-8蛋白在有丝分裂生殖细胞中高度富集,这与之前描述的MEX-3的表达模式相似。 puf-8(-)mex-3(-)双突变性腺含有比单突变和野生型少得多的生殖细胞。尽管这些细胞缺乏有丝分裂,减数分裂和精子标记,但它们保留了生殖细胞特异的P颗粒,如果去除了通常会阻止减数分裂进入的GLP-1,它们便能够进行配子发生。重要的是,我们发现,即使在减数分裂进入缺陷型突变体中,这两种蛋白质中的至少一种对于生殖细胞增殖也是必不可少的,否则该突变体会产生生殖细胞肿瘤。我们得出结论,PUF-8和MEX-3通过促进有丝分裂增殖而不是阻止减数分裂进入而有助于GSC的维持。

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