Heath Robert J W, Insall Robert H
School of Biosciences, University of Birmingham, Edgbaston, Birmingham, B15 2TT, UK.
J Cell Sci. 2008 Apr 1;121(Pt 7):1054-64. doi: 10.1242/jcs.021113. Epub 2008 Mar 11.
PCH family proteins are fundamentally important proteins, linking membrane curvature events with cytoskeletal reorganisation. One group, the MEGAPs (also called srGAPs and WRPs) contain RhoGAP domains in addition to the F-BAR domain. We disrupted MEGAP1 and MEGAP2 in Dictyostelium both singly and in combination. We found a strong cytoskeletal phenotype in MEGAP1(-) cells and a subtle phototaxis defect in MEGAP2(-) slugs. MEGAP1(-)/2(-) cells have an overabundance of filopodia and slug motility and function are affected. The most dramatic changes, however, are on contractile vacuoles. MEGAP1(-)/2(-) cells empty their contractile vacuoles less efficiently than normal and consequently have three times the usual number. GFP-tagged MEGAP1 localises to tubules of the contractile vacuole network and when vacuoles start to empty they recruit cytosolic GFP-MEGAP1. Mutants in the Saccharomyces homologues RGD1 and RGD2 also show abnormal vacuoles, implying that this role is conserved. Thus, MEGAP is an important regulator of the contractile vacuole network, and we propose that tubulation of the contractile vacuole by MEGAP1 represents a novel mechanism for driving vacuole emptying.
PCH家族蛋白是至关重要的蛋白质,将膜曲率事件与细胞骨架重组联系起来。其中一组,即MEGAPs(也称为srGAPs和WRPs)除了F-BAR结构域外还含有RhoGAP结构域。我们在盘基网柄菌中单独或联合破坏了MEGAP1和MEGAP2。我们在MEGAP1(-)细胞中发现了强烈的细胞骨架表型,在MEGAP2(-)蛞蝓中发现了细微的趋光性缺陷。MEGAP1(-)/2(-)细胞有过多的丝状伪足,并且蛞蝓的运动性和功能受到影响。然而,最显著的变化发生在收缩泡上。MEGAP1(-)/2(-)细胞排空收缩泡的效率低于正常细胞,因此收缩泡的数量是正常细胞的三倍。绿色荧光蛋白标记的MEGAP1定位于收缩泡网络的小管,当液泡开始排空时,它们会募集胞质绿色荧光蛋白-MEGAP1。酿酒酵母同源物RGD1和RGD2的突变体也显示出异常的液泡,这意味着该功能是保守的。因此,MEGAP是收缩泡网络的重要调节因子,我们提出MEGAP1介导的收缩泡成管作用代表了一种驱动液泡排空的新机制。