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纳诺斯(Nanos)和普米利奥(Pumilio)在果蝇生殖系干细胞的发育和功能中起着关键作用。

Nanos and Pumilio have critical roles in the development and function of Drosophila germline stem cells.

作者信息

Forbes A, Lehmann R

机构信息

Howard Hughes Medical Institute and Skirball Institute, NYU Medical Center, New York, NY 10016, USA.

出版信息

Development. 1998 Feb;125(4):679-90. doi: 10.1242/dev.125.4.679.

Abstract

The zinc-finger protein Nanos and the RNA-binding protein Pumilio act together to repress the translation of maternal hunchback RNA in the posterior of the Drosophila embryo, thereby allowing abdomen formation. nanos RNA is localized to the posterior pole during oogenesis and the posteriorly synthesized Nanos protein is sequestered into the germ cells as they form in the embryo. This maternally provided Nanos protein is present in germ cells throughout embryogenesis. Here we show that maternally deposited Nanos protein is essential for germ cell migration. Lack of zygotic activity of nanos and pumilio has a dramatic effect on germline development of homozygous females. Given the coordinate function of nanos and pumilio in embryonic patterning, we analyzed the role of these genes in oogenesis. We find that both genes act in the germline. Although the nanos and pumilio ovarian phenotypes have similarities and both genes ultimately affect germline stem cell development, the focus of these phenotypes appears to be different. While pumilio mutant ovaries fail to maintain stem cells and all germline cells differentiate into egg chambers, the focus of nanos function seems to lie in the differentiation of the stem cell progeny, the cystoblast. Consistent with the model that nanos and pumilio have different phenotypic foci during oogenesis, we detect high levels of Pumilio protein in the germline stem cells and high levels of Nanos in the dividing cystoblasts. We therefore suggest that, in contrast to embryonic patterning, Nanos and Pumilio may interact with different partners in the germline.

摘要

锌指蛋白Nanos和RNA结合蛋白Pumilio共同作用,抑制果蝇胚胎后部母体驼背RNA的翻译,从而促进腹部形成。nanos RNA在卵子发生过程中定位于后极,胚胎中形成生殖细胞时,在后部合成的Nanos蛋白被隔离到生殖细胞中。这种由母体提供的Nanos蛋白在整个胚胎发育过程中都存在于生殖细胞中。我们在此表明,母体沉积的Nanos蛋白对生殖细胞迁移至关重要。nanos和pumilio合子活性的缺失对纯合雌性的生殖系发育有显著影响。鉴于nanos和pumilio在胚胎模式形成中的协同作用,我们分析了这些基因在卵子发生中的作用。我们发现这两个基因都在生殖系中起作用。虽然nanos和pumilio的卵巢表型有相似之处,且这两个基因最终都会影响生殖系干细胞的发育,但这些表型的重点似乎有所不同。虽然pumilio突变体卵巢无法维持干细胞,所有生殖系细胞都会分化为卵室,但nanos功能的重点似乎在于干细胞后代成囊母细胞的分化。与nanos和pumilio在卵子发生过程中具有不同表型重点的模型一致,我们在生殖系干细胞中检测到高水平的Pumilio蛋白,在分裂的成囊母细胞中检测到高水平的Nanos蛋白。因此,我们认为,与胚胎模式形成不同,Nanos和Pumilio在生殖系中可能与不同的伙伴相互作用。

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