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Proneural gene self-stimulation in neural precursors: an essential mechanism for sense organ development that is regulated by Notch signaling

机译:神经前体中proneural基因的自我刺激:由Notch信号调节的感觉器官发育的基本机制。

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摘要

To learn about the acquisition of neural fate by ectodermal cells, we have analyzed a very early sign of neural commitment in Drosophila, namely the specific accumulation of achaete–scute complex (AS-C) proneural proteins in the cell that becomes a sensory organ mother cell (SMC). We have characterized an AS-C enhancer that directs expression specifically in SMCs. This enhancer promotes Scute protein accumulation in these cells, an event essential for sensory organ development in the absence of other AS-C genes. Interspecific sequence comparisons and site-directed mutagenesis show the presence of several conserved motifs necessary for enhancer action, some of them binding sites for proneural proteins. These and other data indicate that the enhancer mediates scute self-stimulation, although only in the presence of additional activating factors, which most likely interact with conserved motifs reminiscent of NF-κB-binding sites. Cells neighboring the SMC do not acquire the neural fate because the Notch signaling pathway effectors, the Enhancer of split bHLH proteins, block this proneural gene self-stimulatory loop, possibly by antagonizing the action on the enhancer of the NF-κB-like factors or the proneural proteins. These data suggest a mechanism for SMC committment.
机译:为了了解外胚层细胞对神经命运的获取,我们分析了果蝇中神经承诺的非常早期迹象,即achaete-scute复合物(AS-C)前体蛋白在细胞中的特定积累,成为感觉器官的母亲。单元(SMC)。我们已经表征了一个AS-C增强子,它直接在SMC中指导表达。这种增强剂可促进Scute蛋白在这些细胞中的积累,这是缺乏其他AS-C基因时感觉器官发育所必需的事件。种间序列比较和定点诱变表明,存在一些增强子作用所必需的保守基序,其中一些是神经蛋白的结合位点。这些和其他数据表明,尽管仅在存在其他激活因子的情况下,增强子才能够介导壳的自我刺激,而激活因子最有可能与使人联想到NF-κB结合位点的保守基序相互作用。邻近SMC的细胞没有神经元命运,因为Notch信号通路效应子(分裂的bHLH蛋白的增强子)可能通过拮抗对NF-κB样因子的增强子或前体蛋白。这些数据表明了SMC承诺的机制。

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