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The pipsqueak-domain proteins Distal antenna and Distal antenna-related restrict Hunchback neuroblast expression and early-born neuronal identity

机译:pipsqueak域蛋白远端触角和远端触角相关限制了驼背神经母细胞的表达和早期出生的神经元身份

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摘要

A fundamental question in brain development is how precursor cells generate a diverse group of neural progeny in an ordered manner. Drosophila neuroblasts sequentially express the transcription factors Hunchback (Hb), Krüppel (Kr), Pdm1/Pdm2 (Pdm) and Castor (Cas). Hb is necessary and sufficient to specify early-born temporal identity and, thus, Hb downregulation is essential for specification of later-born progeny. Here, we show that distal antenna (dan) and distal antenna-related (danr), encoding pipsqueak motif DNA-binding domain protein family members, are detected in all neuroblasts during the Hb-to-Cas expression window. Dan and Danr are required for timely downregulation of Hb in neuroblasts and for limiting the number of early-born neurons. Dan and Danr function independently of Seven-up (Svp), an orphan nuclear receptor known to repress Hb expression in neuroblasts, because Dan, Danr and Svp do not regulate each other and dan danr svp triple mutants have increased early-born neurons compared with either dan danr or svp mutants. Interestingly, misexpression of Hb can induce Dan and Svp expression in neuroblasts, suggesting that Hb might activate a negative feedback loop to limit its own expression. We conclude that Dan/Danr and Svp act in parallel pathways to limit Hb expression and allow neuroblasts to transition from making early-born neurons to late-born neurons at the proper time.
机译:大脑发育中的一个基本问题是前体细胞如何以有序的方式产生不同种类的神经后代。果蝇成神经细胞顺序表达转录因子Hunchback(Hb),Krüppel(Kr),Pdm1 / Pdm2(Pdm)和Castor(Cas)。血红蛋白对于指定早期出生的时间身份是必要和充分的,因此,血红蛋白下调对于以后出生的后代的规范至关重要。在这里,我们显示,在Hb至Cas表达窗期间,在所有成神经细胞中都检测到编码pipsqueak主题DNA结合域蛋白家族成员的远端触角(dan)和远端触角相关(danr)。 Dan和Danr是及时下调神经母细胞中Hb的水平并限制早期出生的神经元数量所必需的。 Dan和Danr的功能独立于Seven-up(Svp),后者是一种已知的抑制神经母细胞中Hb表达的孤儿核受体,因为Dan,Danr和Svp不相互调节,并且dan danr svp三突变体与早期相比增加了早产神经元。 dan danr或svp突变体。有趣的是,Hb的错误表达可以诱导成神经细胞中Dan和Svp的表达,这表明Hb可能会激活负反馈回路以限制其自身表达。我们得出的结论是,Dan / Danr和Svp在平行途径中起作用,以限制Hb表达,并允许成神经细胞在适当的时候从产生早生神经元过渡到晚生神经元。

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