Basu Dipanwita, Le Jie, El-Essal Salah El-Din, Huang Shanjin, Zhang Chunhua, Mallery Eileen L, Koliantz Gregore, Staiger Christopher J, Szymanski Daniel B
Agronomy Department, Purdue University, West Lafayette, Indiana 47907-2054, USA.
Plant Cell. 2005 Feb;17(2):502-24. doi: 10.1105/tpc.104.027987. Epub 2005 Jan 19.
In a plant cell, a subset of actin filaments function as a scaffold that positions the endomembrane system and acts as a substrate on which organelle motility occurs. Other actin filament arrays appear to be more dynamic and reorganize in response to growth signals and external cues. The distorted group of trichome morphology mutants provides powerful genetic tools to study the control of actin filament nucleation in the context of morphogenesis. In this article, we report that DISTORTED3 (DIS3) encodes a plant-specific SCAR/WAVE homolog. Null alleles of DIS3, like those of other Arabidopsis thaliana WAVE and Actin-Related Protein (ARP) 2/3 subunit genes, cause trichome distortion, defects in cell-cell adhesion, and reduced hypocotyl growth in etiolated seedlings. DIS3 efficiently activates the actin filament nucleation and branching activity of vertebrate Arp2/3 and functions within a WAVE-ARP2/3 pathway in vivo. DIS3 may assemble into a WAVE complex via a physical interaction with a highly diverged Arabidopsis Abi-1-like bridging protein. These results demonstrate the utility of the Arabidopsis trichome system to understand how the WAVE and ARP2/3 complexes translate signaling inputs into a coordinated morphogenetic response.
在植物细胞中,肌动蛋白丝的一个亚集充当一种支架,用于定位内膜系统,并作为细胞器运动发生的底物。其他肌动蛋白丝阵列似乎更具动态性,并会根据生长信号和外部线索进行重组。毛状体形态突变体的畸变组提供了强大的遗传工具,用于在形态发生的背景下研究肌动蛋白丝成核的控制。在本文中,我们报道DISTORTED3(DIS3)编码一种植物特异性的SCAR/WAVE同源物。DIS3的无效等位基因,与拟南芥其他WAVE和肌动蛋白相关蛋白(ARP)2/3亚基基因的等位基因一样,会导致毛状体畸变、细胞间粘附缺陷以及黄化幼苗下胚轴生长减少。DIS3能有效激活脊椎动物Arp2/3的肌动蛋白丝成核和分支活性,并在体内的WAVE-ARP2/3途径中发挥作用。DIS3可能通过与一种高度分化的拟南芥Abi-1样桥接蛋白的物理相互作用组装成WAVE复合体。这些结果证明了拟南芥毛状体系统在理解WAVE和ARP2/3复合体如何将信号输入转化为协调的形态发生反应方面的实用性。