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首页> 外文期刊>Nature cell biology >A spindle-independent cleavage pathway controls germ cell formation in Drosophila.
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A spindle-independent cleavage pathway controls germ cell formation in Drosophila.

机译:纺锤体独立的裂解途径控制果蝇中生殖细胞的形成。

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摘要

The primordial germ cells (PGCs) are the first cells to form during Drosophila melanogaster embryogenesis. Whereas the process of somatic cell formation has been studied in detail, the mechanics of PGC formation are poorly understood. Here, using four-dimensional multi-photon imaging combined with genetic and pharmacological manipulations, we find that PGC formation requires an anaphase spindle-independent cleavage pathway. In addition to using core regulators of cleavage, including the small GTPase RhoA (Drosophila rho1) and the Rho-associated kinase, ROCK (Drosophila drok), we show that this pathway requires Germ cell-less (GCL), a conserved BTB-domain protein not previously implicated in cleavage mechanics. This alternative form of cell formation suggests that organisms have evolved multiple molecular strategies for regulating the cytoskeleton during cleavage.
机译:原始生殖细胞(PGCs)是果蝇黑腹果蝇胚胎发生过程中形成的第一批细胞。尽管已经详细研究了体细胞形成的过程,但对PGC形成的机理知之甚少。在这里,使用多维多光子成像与遗传和药理学操作相结合,我们发现PGC的形成需要后期纺锤独立的裂解途径。除了使用卵裂的核心调控因子,包括小的GTPase RhoA(果蝇rho1)和与Rho相关的激酶ROCK(果蝇drok)之外,我们还显示该途径需要无生殖细胞(GCL)的保守BTB结构域先前未参与切割机制的蛋白质。细胞形成的这种替代形式表明,生物体已进化出多种分子策略,可在裂解过程中调节细胞骨架。

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