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Bruno negatively regulates germ cell-less expression in a BRE-independent manner

机译:布鲁诺(Bruno)以BRE独立的方式消极地调节无生殖细胞的表达

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摘要

Mechanisms of post-transcriptional control are essential during Drosophila oogenesis and embryogenesis to sequester gene products in discrete regions and ultimately achieve embryonic asymmetry. Maternal germ cell-less (gcl) mRNA accumulates in the pole plasm of the embryo before Gcl protein is detectable. gcl mRNA, but not Gcl protein, can also be detected in somatic regions of the embryo, suggesting that gcl RNA is subject to translational control. We find that Gcl is expressed during oogenesis, and that it is regulated by the translational repressor Bruno (Bru). Increased levels of Gcl are observed in the oocyte when Bru level is reduced, and overexpression of Bru reduces Gcl expression. Consistently, reduction of the maternal dosage of Bruno leads to ectopic Gcl expression in the embryo, which, in turn, represses anterior huckebein (hkb) expression. Bru binds directly to the 9cl 3'UTR in vitro, but, surprisingly, this binding is independent of a BRE (Bruno response element)-like motif. This motif is also not required for in vivo repression of Gcl expression during oogenesis or early embryogenesis. Bru binds the 9cl 3'UTR via its C-terminal domain, which includes RNA recognition motif 3 (RRM3), with little or no contribution from the remainder of the protein. We conclude that repression by Bruno during oogenesis is required to restrict Gcl expression in the early embryo and that Bru represses gcl expression in a manner that involves RRM3 and a sequence unrelated to the BRE.
机译:转录后控制的机制在果蝇卵子发生和胚胎发生过程中对于将基因产物隔离在离散区域并最终实现胚胎不对称至关重要。在检测到Gcl蛋白之前,母体无生殖细胞(gcl)mRNA会积聚在胚胎的极质中。 gcl mRNA,但不是Gcl蛋白,也可以在胚胎的体细胞区域中检测到,表明gcl RNA受到翻译控制。我们发现,Gcl在卵子发生过程中表达,并且受翻译抑制基因Bruno(Bru)的调节。当Bru水平降低时,在卵母细胞中观察到Gcl水平升高,而Bru的过表达降低了Gcl表达。一致的是,减少布鲁诺的母体剂量会导致胚胎中异位Gcl的表达,进而抑制前huckebein(hkb)的表达。 Bru在体外直接与9cl 3'UTR结合,但令人惊讶的是,这种结合独立于BRE(布鲁诺反应元件)样基序。在卵子发生或早期胚胎发生过程中,体内抑制Gcl表达也不是必需的。 Bru通过其C端结构域结合9cl 3'UTR,该结构域包括RNA识别基序3(RRM3),其余蛋白质几乎没有贡献。我们得出的结论是,在卵子发生过程中通过Bruno进行抑制是限制早期胚胎中Gcl表达的必要条件,而Bru则以涉及RRM3和与BRE无关的序列的方式抑制gcl表达。

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