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果蝇内脏肌发育过程中Vrp1在细胞融合中的作用表征

Characterisation of the role of Vrp1 in cell fusion during the development of visceral muscle of Drosophila melanogaster.

作者信息

Eriksson Therese, Varshney Gaurav, Aspenström Pontus, Palmer Ruth H

机构信息

Department of Molecular Biology, Building 6L, Umeå University, Umeå S-90187, Sweden.

出版信息

BMC Dev Biol. 2010 Aug 11;10:86. doi: 10.1186/1471-213X-10-86.

Abstract

BACKGROUND

In Drosophila muscle cell fusion takes place both during the formation of the somatic mesoderm and the visceral mesoderm, giving rise to the skeletal muscles and the gut musculature respectively. The core process of myoblast fusion is believed to be similar for both organs. The actin cytoskeleton regulator Verprolin acts by binding to WASP, which in turn binds to the Arp2/3 complex and thus activates actin polymerization. While Verprolin has been shown to be important for somatic muscle cell fusion, the function of this protein in visceral muscle fusion has not been determined.

RESULTS

Verprolin is specifically expressed in the fusion competent myoblasts of the visceral mesoderm, suggesting a role in visceral mesoderm fusion. We here describe a novel Verprolin mutant allele which displays subtle visceral mesoderm fusion defects in the form of mislocalization of the immunoglobulin superfamily molecule Duf/Kirre, which is required on the myoblast cell surface to facilitate attachment between cells that are about to fuse, indicating a function for Verprolin in visceral mesoderm fusion. We further show that Verprolin mutant cells are capable of both migrating and fusing and that the WASP-binding domain of Verprolin is required for rescue of the Verprolin mutant phenotype.

CONCLUSIONS

Verprolin is expressed in the visceral mesoderm and plays a role in visceral muscle fusion as shown by mislocalization of Duf/Kirre in the Verprolin mutant, however it is not absolutely required for myoblast fusion in either the visceral or the somatic mesoderm.

摘要

背景

在果蝇中,肌肉细胞融合发生在体壁中胚层和内脏中胚层形成过程中,分别产生骨骼肌和肠道肌肉组织。成肌细胞融合的核心过程被认为在这两个器官中是相似的。肌动蛋白细胞骨架调节因子维普洛林通过与WASP结合发挥作用,WASP又与Arp2/3复合物结合,从而激活肌动蛋白聚合。虽然维普洛林已被证明对体壁肌肉细胞融合很重要,但该蛋白在内脏肌肉融合中的功能尚未确定。

结果

维普洛林在内脏中胚层有融合能力的成肌细胞中特异性表达,提示其在内脏中胚层融合中起作用。我们在此描述了一种新的维普洛林突变等位基因,它表现出细微的内脏中胚层融合缺陷,形式为免疫球蛋白超家族分子Duf/Kirre定位错误,Duf/Kirre是成肌细胞表面促进即将融合的细胞间附着所必需的,这表明维普洛林在内脏中胚层融合中有功能。我们进一步表明,维普洛林突变细胞能够迁移和融合,且维普洛林的WASP结合结构域是挽救维普洛林突变表型所必需的。

结论

维普洛林在内脏中胚层表达,并在内脏肌肉融合中起作用,如维普洛林突变体中Duf/Kirre定位错误所示,然而,它对于内脏或体壁中胚层的成肌细胞融合并非绝对必需。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/26f5/2931478/6f30f8fe8fe8/1471-213X-10-86-1.jpg

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