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黑腹果蝇Notch基因座的胚胎表达以及预测蛋白细胞外EGF样结构域点突变的影响。

The embryonic expression of the Notch locus of Drosophila melanogaster and the implications of point mutations in the extracellular EGF-like domain of the predicted protein.

作者信息

Hartley D A, Xu T A, Artavanis-Tsakonas S

机构信息

Department of Biology, Yale University, New Haven, CT.

出版信息

EMBO J. 1987 Nov;6(11):3407-17. doi: 10.1002/j.1460-2075.1987.tb02664.x.

Abstract

The Notch locus of Drosophila melanogaster is one of a small number of zygotically acting 'neurogenic' genes necessary for the correct segregation of neural from epidermal lineages during embryogenesis. The predicted gene product is implicated in a cell interaction mechanism required to achieve this ectodermal differentiation. We have examined wild-type Notch expression by in situ hybridization and find it to be expressed in more cells than we would have predicted given a sole function in regulating neurogenesis. We conclude from these data that Notch plays a more general role in development. In order to assess the dependence of Notch expression on other neurogenic gene function we have hybridized Notch probes to Enhancer of split mutants which are known to interfere with expression of Notch phenotypes. We intimate that the nature of interaction between these genes is not at the level of transcription. Instead, the DNA sequence of split, which is a missense mutation in the EGF-like extracellular domain of the Notch protein, suggests a direct biochemical interaction between Notch and E(spl) proteins. The similar site of a second point mutation, AxE2, implies that protein interactions also occur between Notch proteins. Finally we discuss the general implications of our findings with a view to the models and mechanisms of Notch action in regulating individual cellular interactions during development.

摘要

果蝇的Notch基因座是少数在胚胎发育期间神经细胞与表皮细胞谱系正确分离所必需的合子作用“神经源性”基因之一。预测的基因产物参与实现这种外胚层分化所需的细胞相互作用机制。我们通过原位杂交检测了野生型Notch的表达,发现其表达的细胞比我们基于其在调节神经发生中的单一功能所预测的要多。从这些数据我们得出结论,Notch在发育中发挥更广泛的作用。为了评估Notch表达对其他神经源性基因功能的依赖性,我们将Notch探针与已知会干扰Notch表型表达的分裂增强子突变体进行杂交。我们推测这些基因之间相互作用的本质并非在转录水平。相反,分裂基因的DNA序列是Notch蛋白的EGF样细胞外结构域中的错义突变,这表明Notch与E(spl)蛋白之间存在直接的生化相互作用。第二个点突变AxE2的相似位点表明Notch蛋白之间也存在蛋白质相互作用。最后,我们结合Notch在发育过程中调节个体细胞相互作用的作用模型和机制,讨论了我们研究结果的普遍意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/62fb/553798/b50865661dc6/emboj00251-0200-a.jpg

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