Bogdan Sven, Stephan Raiko, Löbke Christian, Mertens Alexandra, Klämbt Christian
Institut für Neurobiologie, Universität Münster, Badestr. 9, D-48149 Münster, Germany.
Nat Cell Biol. 2005 Oct;7(10):977-84. doi: 10.1038/ncb1305. Epub 2005 Sep 11.
Actin polymerization is a key process for many cellular events during development. To a large extent, the formation of filamentous actin is controlled by the WASP and WAVE proteins that activate the Arp2/3 complex in different developmental processes. WAVE function is regulated through a protein complex containing Sra1, Kette and Abi. Using biochemical, cell biological and genetic tools, we show here that the Abi protein also has a central role in activating WASP-mediated processes. Abi binds WASP through its carboxy-terminal domain and acts as a potent stimulator of WASP-dependent F-actin formation. To elucidate the biological function of abi in Drosophila melanogaster, we studied bristle development, a process known to require wasp function. Reduction of abi function leads to a loss of bristles similar to that observed in wasp mutants. Activation of Abi results in the formation of ectopic bristles, a phenotype that is suppressed by a reduction of wasp activity but is not affected by the reduction of wave function. Thus, in vivo Abi may set the balance between WASP and WAVE in different actin-based developmental processes.
肌动蛋白聚合是发育过程中许多细胞事件的关键过程。在很大程度上,丝状肌动蛋白的形成受WASP和WAVE蛋白控制,它们在不同的发育过程中激活Arp2/3复合体。WAVE功能通过包含Sra1、Kette和Abi的蛋白质复合体进行调节。利用生化、细胞生物学和遗传学工具,我们在此表明Abi蛋白在激活WASP介导的过程中也起着核心作用。Abi通过其羧基末端结构域与WASP结合,并作为WASP依赖的F-肌动蛋白形成的有效刺激物。为了阐明abi在黑腹果蝇中的生物学功能,我们研究了刚毛发育,这是一个已知需要黄蜂功能的过程。abi功能的降低导致刚毛缺失,类似于在黄蜂突变体中观察到的情况。Abi的激活导致异位刚毛的形成,这种表型可被黄蜂活性的降低所抑制,但不受wave功能降低的影响。因此,在体内,Abi可能在不同的基于肌动蛋白的发育过程中平衡WASP和WAVE之间的关系。