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首页> 外文期刊>Development >A Notch-independent function of Suppressor of Hairless during the development of the bristle sensory organ precursor cell of Drosophila.
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A Notch-independent function of Suppressor of Hairless during the development of the bristle sensory organ precursor cell of Drosophila.

机译:果蝇的鬃毛感觉器官前体细胞发育过程中,无毛发抑制因子的Notch依赖性功能。

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Su(H)/CBF1 is a key component of the evolutionary conserved Notch signalling pathway. It is a transcription factor that acts as a repressor in the absence of the Notch signal. If Notch signalling is activated, it associates with the released intracellular domain of the Notch receptor and acts as an activator of transcription. During the development of the mechanosensory bristles of Drosophila, a selection process called lateral inhibition assures that only a few cells are selected out of a group to become sensory organ precursors (SOP). During this process, the SOP cell is thought to suppress the same fate in its surrounding neighbours via the activation of the Notch/Su(H) pathway in these cells. We show that, although Su(H) is required to prevent the SOP fate during lateral inhibition, it is also required to promote the further development of the SOP once it is selected. Importantly, in this situation Su(H) appears to act independently of the Notch signalling pathway. We find that loss of Su(H) function leads to an arrest of SOP development because of the loss of sens expression in the SOP. Our results suggest that Su(H) acts as a repressor that suppresses the activity of one or more negative regulator(s) of sens expression. We show that this repressor activity is encoded by one or several genes of the E(spl)-complex. Our results further suggest that the position of the SOP in a proneural cluster is determined by very precise positional cues, which render the SOP insensitive to Dl.
机译:Su(H)/ CBF1是进化保守Notch信号通路的关键组成部分。它是在没有Notch信号的情况下充当阻遏物的转录因子。如果Notch信号传导被激活,则它与Notch受体释放的细胞内结构域相关联,并充当转录激活因子。在果蝇的机械感觉刷毛的发展过程中,称为横向抑制的选择过程可确保从一组中仅选择少数细胞成为感觉器官前体(SOP)。在此过程中,SOP细胞被认为可以通过激活这些细胞中的Notch / Su(H)途径来抑制周围邻居的命运。我们表明,尽管需要Su(H)来防止SOP在侧向抑制过程中的命运,但一旦选择SOP,还需要促进SOP的进一步发展。重要的是,在这种情况下,Su(H)似乎独立于Notch信号通路起作用。我们发现Su(H)功能的丧失会导致SOP发育停止,因为SOP中的sens表达缺失。我们的研究结果表明Su(H)作为阻遏物,抑制了一个或多个sens表达的负调节剂的活性。我们表明,这种阻遏物活性是由E(spl)-复杂的一个或几个基因编码的。我们的结果进一步表明,SOP在前神经簇中的位置由非常精确的位置提示确定,这使得SOP对D1不敏感。

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