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锚蛋白负调控 BMP 信号通路控制果蝇翅膀发育。

Anchor negatively regulates BMP signalling to control Drosophila wing development.

机构信息

College of Life Sciences, Northeast Forestry University, Harbin 150040, China.

Heilongjiang Academy of Agricultural Sciences, Harbin 150040, China.

出版信息

Eur J Cell Biol. 2018 May;97(4):308-317. doi: 10.1016/j.ejcb.2018.04.007. Epub 2018 Apr 25.

Abstract

G protein-coupled receptors play particularly important roles in many organisms. The novel Drosophila gene anchor is an orthologue of vertebrate GPR155. However, the roles of anchor in molecular functions and biological processes, especially in wing development, remain unknown. Knockdown of anchor resulted in an increased wing size and additional and thickened veins. These abnormal wing phenotypes were similar to those observed in BMP signalling gain-of-function experiments. We observed that the BMP signalling indicator p-Mad was significantly increased in wing discs in which anchor RNAi was induced in larvae and accumulated abnormally in intervein regions in pupae. Furthermore, the expression of target genes of the BMP signalling pathway was examined using a lacZ reporter, and the results indicated that omb and sal were substantially increased in anchor-knockdown wing discs. An investigation of genetic interactions between Anchor and the BMP signalling pathway revealed that the thickened and ectopic vein tissues were rescued by knocking down BMP levels. These results suggested that Anchor functions to negatively regulate BMP signalling during wing development and vein formation.

摘要

G 蛋白偶联受体在许多生物中发挥着特别重要的作用。新发现的果蝇基因 anchor 是脊椎动物 GPR155 的同源物。然而,anchor 在分子功能和生物学过程中的作用,尤其是在翅膀发育方面的作用尚不清楚。anchor 的敲低导致翅膀大小增加,并且出现额外的、增厚的脉。这些异常的翅膀表型与在 BMP 信号转导功能获得实验中观察到的表型相似。我们观察到,在幼虫中诱导 anchor RNAi 后,p-Mad(BMP 信号的指示剂)在翅膀盘中显著增加,并在蛹的脉间区域异常积累。此外,使用 lacZ 报告基因检测 BMP 信号通路的靶基因表达,结果表明,在 anchor 敲低的翅膀盘中,omb 和 sal 的表达显著增加。对 Anchor 和 BMP 信号通路之间的遗传相互作用的研究表明,通过降低 BMP 水平可以挽救增厚和异位脉组织。这些结果表明,在翅膀发育和脉形成过程中,Anchor 作为一种负调控因子来调节 BMP 信号。

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