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Sensory-Neuron Subtype-Specific Transcriptional Programs Controlling Dendrite Morphogenesis: Genome-wide Analysis of Abrupt and Knot/Collier

机译:控制树突形态发生的感觉神经元亚型的特定转录程序:突变和结/科利尔的全基因组分析。

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摘要

The transcription factors Abrupt (Ab) and Knot (Kn) act as selectors of distinct dendritic arbor morphologies in two classes of Drosophila sensory neurons, termed class I and class IV, respectively. We performed binding-site mapping and transcriptional profiling of these isolated neurons. Their profiles were similarly enriched in cell-type-specific enhancers of genes implicated in neural development. We identified a total of 429 target genes, of which 56 were common to Ab and Kn; these targets included genes necessary to shape dendritic arbors in either or both of the two sensory subtypes. Furthermore, a common target gene, encoding the cell adhesion molecule Ten-m, was expressed more strongly in class I than class IV, and this differential was critical to the class-selective directional control of dendritic branch sprouting or extension. Our analyses illustrate how differentiating neurons employ distinct and shared repertoires of gene expression to produce class-selective morphological traits.
机译:转录因子Abrupt(Ab)和Knot(Kn)在两类果蝇感觉神经元中分别充当树突状乔木形态的选择器,分别称为I类和IV类。我们对这些分离的神经元进行了结合位点定位和转录分析。他们的概况同样丰富了涉及神经发育的基因的细胞类型特异性增强子。我们总共鉴定了429个靶基因,其中56个是Ab和Kn共有的基因。这些靶标包括在两种感觉亚型中的一种或两种中塑造树突状树突所需的基因。此外,编码细胞粘附分子Ten-m的共同靶基因在I类中的表达比IV类强,这种差异对于树突状分支的发芽或延伸的类选择性方向控制至关重要。我们的分析说明了分化神经元如何利用独特且共享的基因表达谱来产生类选择性形态特征。

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