Myers Scott A, Leeper Laura R, Chung Chang Y
Department of Pharmacology, Vanderbilt University Medical Center, Nashville, TN 37232-6600, USA.
Mol Biol Cell. 2006 Oct;17(10):4564-75. doi: 10.1091/mbc.e05-10-0994. Epub 2006 Aug 9.
The role of WASP-interacting protein (WIP) in the process of F-actin assembly during chemotaxis of Dictyostelium was examined. Mutations of the WH1 domain of WASP led to a reduction in binding to WIPa, a newly identified homolog of mammalian WIP, a reduction of F-actin polymerization at the leading edge, and a reduction in chemotactic efficiency. WIPa localizes to sites of new pseudopod protrusion and colocalizes with WASP at the leading edge. WIPa increases F-actin elongation in vivo and in vitro in a WASP-dependent manner. WIPa translocates to the cortical membrane upon uniform cAMP stimulation in a time course that parallels F-actin polymerization. WIPa-overexpressing cells exhibit multiple microspike formation and defects in chemotactic efficiency due to frequent changes of direction. Reduced expression of WIPa by expressing a hairpin WIPa (hp WIPa) construct resulted in more polarized cells that exhibit a delayed response to a new chemoattractant source due to delayed extension of pseudopod toward the new gradient. These results suggest that WIPa is required for new pseudopod protrusion and prompt reorientation of cells toward a new gradient by initiating localized bursts of actin polymerization and/or elongation.
研究了WASP相互作用蛋白(WIP)在盘基网柄菌趋化作用过程中F-肌动蛋白组装过程中的作用。WASP的WH1结构域突变导致与WIPa(一种新鉴定的哺乳动物WIP同源物)的结合减少,前缘F-肌动蛋白聚合减少,趋化效率降低。WIPa定位于新伪足突出部位,并与前缘的WASP共定位。WIPa以WASP依赖的方式在体内和体外增加F-肌动蛋白的伸长。在均匀的cAMP刺激下,WIPa以与F-肌动蛋白聚合平行的时间进程转运到皮质膜。过表达WIPa的细胞由于方向频繁改变而表现出多个微刺形成和趋化效率缺陷。通过表达发夹WIPa(hp WIPa)构建体降低WIPa的表达导致更多极化细胞,这些细胞由于伪足向新梯度的延迟延伸而对新的趋化源表现出延迟反应。这些结果表明,WIPa是新伪足突出以及通过启动局部肌动蛋白聚合和/或伸长爆发使细胞迅速重新定向至新梯度所必需的。