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边缘边界与哺乳动物中Notch依赖的模式形成中心重合,并改变果蝇中Notch依赖的发育。

Fringe boundaries coincide with Notch-dependent patterning centres in mammals and alter Notch-dependent development in Drosophila.

作者信息

Cohen B, Bashirullah A, Dagnino L, Campbell C, Fisher W W, Leow C C, Whiting E, Ryan D, Zinyk D, Boulianne G, Hui C C, Gallie B, Phillips R A, Lipshitz H D, Egan S E

机构信息

Division of Immunology and Cancer Research, Hospital for Sick Children, Toronto, Ontario, Canada.

出版信息

Nat Genet. 1997 Jul;16(3):283-8. doi: 10.1038/ng0797-283.

Abstract

In both vertebrate and invertebrate development, cells are often programmed to adopt fates distinct from their neighbors. Genetic analyses in Drosophila melanogaster have highlighted the importance of cell surface and secreted proteins in these cell fate decisions. Homologues of these proteins have been identified and shown to play similar roles in vertebrate development. Fringe, a novel signalling protein, has been shown to induce wing margin formation in Drosophila. Fringe shares significant sequence homology and predicted secondary structure similarity with bacterial glycosyltransferases. Thus fringe may control wing development by altering glycosylation of cell surface and/or secreted molecules. Recently, two fringe genes were isolated from Xenopus laevis. We report here the cloning and characterization of three murine fringe genes (lunatic fringe, manic fringe and radical fringe). We find in several tissues that fringe expression boundaries coincide with Notch-dependent patterning centres and with Notch-ligand expression boundaries. Ectopic expression of murine manic fringe or radical fringe in Drosophila results in phenotypes that resemble those seen in Notch mutants.

摘要

在脊椎动物和无脊椎动物的发育过程中,细胞常常被编程以采用与其相邻细胞不同的命运。对黑腹果蝇的遗传分析突出了细胞表面蛋白和分泌蛋白在这些细胞命运决定中的重要性。这些蛋白的同源物已被鉴定出来,并显示在脊椎动物发育中发挥类似作用。Fringe是一种新型信号蛋白,已被证明可诱导果蝇翅缘形成。Fringe与细菌糖基转移酶具有显著的序列同源性和预测的二级结构相似性。因此,Fringe可能通过改变细胞表面和/或分泌分子的糖基化来控制翅的发育。最近,从非洲爪蟾中分离出了两个Fringe基因。我们在此报告三个小鼠Fringe基因(月神Fringe、狂躁Fringe和激进Fringe)的克隆和特征分析。我们发现在几个组织中,Fringe表达边界与Notch依赖性模式中心以及Notch配体表达边界一致。小鼠狂躁Fringe或激进Fringe在果蝇中的异位表达导致的表型类似于在Notch突变体中看到的表型。

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