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首页> 外文期刊>Development >Klumpfuss controls FMRFamide expression by enabling BMP signaling within the NB5-6 lineage
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Klumpfuss controls FMRFamide expression by enabling BMP signaling within the NB5-6 lineage

机译:Klumpfuss通过在NB5-6谱系内启用BMP信号传导来控制FMRFamide的表达

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A number of transcription factors that are expressed within most, if not all, embryonic neuroblast (NB) lineages participate in neural subtype specification. Some have been extensively studied in several NB lineages (e.g. components of the temporal gene cascade) whereas others only within specific NB lineages. To what extent they function in other lineages remains unknown. Klumpfuss (Klu), the Drosophila ortholog of the mammalian Wilms tumor 1 (WT1) protein, is one such transcription factor. Studies in the NB4-2 lineage have suggested that Klu functions to ensure that the two ganglion mother cells (GMCs) in this embryonic NB lineage acquire different fates. Owing to limited lineage marker availability, these observations were made only for the NB4-2 lineage. Recent findings reveal that Klu is necessary for larval neuroblast growth and self-renewal. We have extended the study of Klu to the well-known embryonic NB5-6T lineage and describe a novel role for Klu in the Drosophila embryonic CNS. Our results demonstrate that Klu is expressed specifically in the postmitotic Ap4/FMRFa neuron, promoting its differentiation through the initiation of BMP signaling. Our findings indicate a pleiotropic function of Klu in Ap cluster specification in general and particularly in Ap4 neuron differentiation, indicating that Klu is a multitasking transcription factor. Finally, our studies indicate that a transitory downregulation of klu is crucial for the specification of the Ap4/FMRFa neuron. Similar to WT1, klu seems to have either self-renewal or differentiation-promoting functions, depending on the developmental context.
机译:在大多数(如果不是全部)胚胎神经母细胞(NB)谱系中表达的许多转录因子参与了神经亚型规范。一些已经在几个NB谱系中进行了广泛研究(例如时间基因级联的组成部分),而另一些仅在特定的NB谱系中进行了研究。它们在其他谱系中发挥何种作用尚不清楚。哺乳动物Wilms肿瘤1(WT1)蛋白的果蝇直向同源物Klumpfuss(Klu)是一种这样的转录因子。 NB4-2谱系的研究表明,Klu的功能是确保该胚胎NB谱系中的两个神经节母细胞(GMC)获得不同的命运。由于沿袭标记的可用性有限,这些观察仅针对NB4-2沿袭。最近的发现表明,Klu是幼虫神经母细胞生长和自我更新所必需的。我们已经将Klu的研究扩展到了著名的胚胎NB5-6T谱系,并描述了Klu在果蝇胚胎CNS中的新作用。我们的结果表明,Klu在有丝分裂后的Ap4 / FMRFa神经元中特异性表达,通过启动BMP信号来促进其分化。我们的发现表明,Klu在Ap簇规范中,特别是在Ap4神经元分化中,具有多效性功能,表明Klu是一个多任务转录因子。最后,我们的研究表明,klu的短暂下调对于Ap4 / FMRFa神经元的规格至关重要。与WT1相似,klu似乎具有自我更新或促进分化的功能,具体取决于开发环境。

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