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依赖于Staufen的prospero mRNA定位有助于神经母细胞子代细胞的命运决定。

Staufen-dependent localization of prospero mRNA contributes to neuroblast daughter-cell fate.

作者信息

Broadus J, Fuerstenberg S, Doe C Q

机构信息

Department of Cell & Structural Biology, Howard Hughes Medical Institute, University of Illinois, Urbana 61801, USA.

出版信息

Nature. 1998 Feb 19;391(6669):792-5. doi: 10.1038/35861.

Abstract

The generation of cellular diversity is essential in embryogenesis, especially in the central nervous system. During neurogenesis, cell interactions or asymmetric protein localization during mitosis can generate daughter cells with different fates. Here we describe the asymmetric localization of a messenger RNA and an RNA-binding protein that creates molecular and developmental differences between Drosophila neural precursors (neuroblasts) and their daughter cells, ganglion mother cells (GMCs). The prospero (pros) mRNA and the RNA-binding protein Staufen (Stau) are asymmetrically localized in mitotic neuroblasts and are specifically partitioned into the GMC, as is Pros protein. Stau is required for localization of pros RNA but not of Pros protein. Loss of localization of Stau or of pros RNA alters GMC development, but only in embryos with reduced levels of Pros protein, suggesting that pros RNA and Pros protein act redundantly to specify GMC fate. We also find that GMCs do not transcribe the pros gene, showing that inheritance of pros RNA and/or Pros protein from the neuroblast is essential for GMC specification.

摘要

细胞多样性的产生在胚胎发育过程中至关重要,尤其是在中枢神经系统中。在神经发生过程中,有丝分裂期间的细胞相互作用或蛋白质不对称定位可产生具有不同命运的子细胞。在这里,我们描述了一种信使核糖核酸(mRNA)和一种核糖核酸结合蛋白的不对称定位,这种定位在果蝇神经前体细胞(神经母细胞)及其子细胞神经节母细胞(GMC)之间产生了分子和发育上的差异。原癌基因 prospero(pros)mRNA和核糖核酸结合蛋白Staufen(Stau)在有丝分裂的神经母细胞中不对称定位,并像Pros蛋白一样被特异性地分配到GMC中。Stau是pros RNA定位所必需的,但不是Pros蛋白定位所必需的。Stau或pros RNA定位的丧失会改变GMC的发育,但仅在Pros蛋白水平降低的胚胎中出现这种情况,这表明pros RNA和Pros蛋白在决定GMC命运方面发挥冗余作用。我们还发现GMC不转录pros基因,这表明从神经母细胞继承pros RNA和/或Pros蛋白对于GMC的特化至关重要。

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