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Regulatory logic driving stable levels of defective proventriculus expression during terminal photoreceptor specification in flies

机译:在恒星终端光感受器规范期间的调节逻辑驾驶稳定水平的缺陷型多元表达

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摘要

How differential levels of gene expression are controlled in post-mitotic neurons is poorly understood. In the Drosophila retina, expression of the transcription factor Defective Proventriculus (Dve) at distinct cell type-specific levels is required for terminal differentiation of color- and motion-detecting photoreceptors. Here, we find that the activities of two cis-regulatory enhancers are coordinated to drive dve expression in the fly eye. Three transcription factors act on these enhancers to determine cell-type specificity. Negative autoregulation by Dve maintains expression from each enhancer at distinct homeostatic levels. One enhancer acts as an inducible backup ('dark' shadow enhancer) that is normally repressed but becomes active in the absence of the other enhancer. Thus, two enhancers integrate combinatorial transcription factor input, feedback and redundancy to generate cell type-specific levels of dve expression and stable photoreceptor fate. This regulatory logic may represent a general paradigm for how precise levels of gene expression are established and maintained in post-mitotic neurons.
机译:多态性神经元的基因表达如何控制差异差异。在果蝇视网膜中,需要在不同细胞类型特异性水平下进行不同细胞类型特异性水平的转录因子缺陷缺陷的常量级别(DVE)的表达,用于颜色和运动检测光感受器的末端分化。在这里,我们发现两个顺式调节增强剂的活动协调,以在苍蝇眼中推动DVE表达。三种转录因子对这些增强剂作用,以确定细胞类型特异性。 DVE的阴性自动预测在不同的稳态水平下维持每个增强子的表达。一个增强器充当一个诱导备用备份('黑暗'阴影增强剂),通常被压抑,但在没有其他增强剂的情况下变得活跃。因此,两种增强剂集成了组合转录因子输入,反馈和冗余,以产生细胞类型特异性DVE表达和稳定的感光器命运。该调节逻辑可以代表一般范式,用于如何在有丝组肠后神经元中建立和维持基因表达的精确水平。

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