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A Member of the Notch Group of Interacting Loci Deltex Encodes a Cytoplasmic Basic Protein

机译:Deltex是相互作用位点Notch组的成员编码细胞质碱性蛋白

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摘要

Prior genetic studies have suggested a functional relationship between the product of the deltex gene and those of three of the so-called ``neurogenic'' loci, Notch, Delta and mastermind. To gain further insight into this relationship, we have proceeded with a molecular characterization of deltex. We report that deltex encodes a maternally and zygotically expressed transcript that conceptually translates to a basic protein of novel sequence. Immunolocalization of the protein reveals an apparently ubiquitous distribution in embryonic and imaginal tissues. Because our detection methods also reveal a very low level of protein accumulation within the cytoplasm of cells, we have used transgenic flies to confirm this observation by ectopically expressing deltex under the control of a heat shock gene promoter. The resulting overexpression rescues deltex mutant defects but does not produce any obvious phenotypic abnormalities in otherwise wild-type flies. Finally, we examine genetically several Supressor of deltex mutations for evidence of functional integration with deltex and other neurogenic genes. We demonstrate that in addition to suppressing all adult morphological defects of deltex alleles, these suppressors also are capable of suppressing most synergistic effects involving deltex and Notch, Delta and mastermind.
机译:先前的遗传研究表明,deltex基因的产物与所谓的``神经源性''基因座,Notch,Delta和mastermind中的三个基因座之间存在功能关系。为了进一步了解这种关系,我们进行了deltex的分子表征。我们报告,deltex编码从母体和合子表达的转录本,概念上翻译成新序列的基本蛋白质。蛋白质的免疫定位揭示了在胚胎和想象的组织中普遍存在的分布。因为我们的检测方法还揭示了细胞质内蛋白质积累的水平非常低,所以我们已使用转基因果蝇通过在热激基因启动子的控制下异位表达deltex来证实这一观察。由此产生的过表达可以挽救deltex突变体的缺陷,但不会在其他野生型果蝇中产生任何明显的表型异常。最后,我们从基因上检查了数个deltex突变的Supressor,以寻找与deltex和其他神经源性基因功能整合的证据。我们证明,除了抑制deltex等位基因的所有成人形态缺陷外,这些抑制剂还能够抑制涉及deltex和Notch,Delta和mastermind的大多数协同效应。

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