Jafar-Nejad Hamed, Tien An-Chi, Acar Melih, Bellen Hugo J
Department of Molecular and Human Genetics, Baylor College of Medicine, One Baylor Plaza, Houston, TX 77030, USA.
Development. 2006 May;133(9):1683-92. doi: 10.1242/dev.02338. Epub 2006 Mar 22.
The basic helix-loop-helix (bHLH) proneural proteins Achaete and Scute cooperate with the class I bHLH protein Daughterless to specify the precursors of most sensory bristles in Drosophila. However, the mechanosensory bristles at the Drosophila wing margin have been reported to be unaffected by mutations that remove Achaete and Scute function. Indeed, the proneural gene(s) for these organs is not known. Here, we show that the zinc-finger transcription factor Senseless, together with Daughterless, plays the proneural role for the wing margin mechanosensory precursors, whereas Achaete and Scute are required for the survival of the mechanosensory neuron and support cells in these lineages. We provide evidence that Senseless and Daughterless physically interact and synergize in vivo and in transcription assays. Gain-of-function studies indicate that Senseless and Daughterless are sufficient to generate thoracic sensory organs (SOs) in the absence of achaete-scute gene complex function. However, analysis of senseless loss-of-function clones in the thorax implicates Senseless not in the primary SO precursor (pI) selection, but in the specification of pI progeny. Therefore, although Senseless and bHLH proneural proteins are employed during the development of all Drosophila bristles, they play fundamentally different roles in different subtypes of these organs. Our data indicate that transcription factors other than bHLH proteins can also perform the proneural function in the Drosophila peripheral nervous system.
基本螺旋-环-螺旋(bHLH)神经前体蛋白无刚毛和粗糙与I类bHLH蛋白无女儿协同作用,以确定果蝇中大多数感觉刚毛的前体。然而,据报道,果蝇翅缘的机械感觉刚毛不受去除无刚毛和粗糙功能的突变影响。实际上,这些器官的神经前体基因尚不清楚。在这里,我们表明锌指转录因子无意义蛋白与无女儿一起,对翅缘机械感觉前体发挥神经前体作用,而无刚毛和粗糙是这些谱系中机械感觉神经元和支持细胞存活所必需的。我们提供的证据表明,无意义蛋白和无女儿在体内和转录试验中发生物理相互作用并协同作用。功能获得性研究表明,在无刚毛-粗糙基因复合体功能的情况下,无意义蛋白和无女儿足以产生胸部感觉器官(SOs)。然而,对胸部无意义功能缺失克隆的分析表明,无意义蛋白并不参与初级SO前体(pI)的选择,而是参与pI后代的特化。因此,尽管无意义蛋白和bHLH神经前体蛋白在所有果蝇刚毛的发育过程中都有应用,但它们在这些器官的不同亚型中发挥着根本不同的作用。我们的数据表明,除bHLH蛋白外的转录因子也可以在果蝇外周神经系统中发挥神经前体功能。