Biological Physics, Institute of Physics and Astronomy, University of Potsdam, Potsdam, Germany.
J Muscle Res Cell Motil. 2012 Jun;33(2):95-106. doi: 10.1007/s10974-012-9287-8. Epub 2012 Mar 11.
Many essential functions in eukaryotic cells like phagocytosis, division, and motility rely on the dynamical properties of the actin cytoskeleton. A central player in the actin system is the Arp2/3 complex. Its activity is controlled by members of the WASP (Wiskott-Aldrich syndrome protein) family. In this work, we investigated the effect of the carbazole derivative wiskostatin, a recently identified N-WASP inhibitor, on actin-driven processes in motile cells of the social ameba Dictyostelium discoideum. Drug-treated cells exhibited an altered morphology and strongly reduced pseudopod formation. However, TIRF microscopy images revealed that the overall cortical network structure remained intact. We probed the mechanical stability of wiskostatin-treated cells using a microfluidic device. While the total amount of F-actin in the cells remained constant, their stiffness was strongly reduced. Furthermore, wiskostatin treatment enhanced the resistance to fluid shear stress, while spontaneous motility as well as chemotactic motion in gradients of cAMP were reduced. Our results suggest that wiskostatin affects the mechanical integrity of the actin cortex so that its rigidity is reduced and actin-driven force generation is impaired.
真核细胞中的许多基本功能,如吞噬作用、分裂和运动,都依赖于肌动蛋白细胞骨架的动力学特性。肌动蛋白系统中的一个核心参与者是 Arp2/3 复合物。其活性受 Wiskott-Aldrich 综合征蛋白 (WASP) 家族成员的控制。在这项工作中,我们研究了咔唑衍生物 wiskostatin(最近确定的 N-WASP 抑制剂)对运动阿米巴 Dictyostelium discoideum 中运动细胞中肌动蛋白驱动过程的影响。用药物处理的细胞表现出改变的形态和强烈减少的伪足形成。然而,TIRF 显微镜图像显示,整个皮质网络结构保持完整。我们使用微流控设备探测了 wiskostatin 处理的细胞的机械稳定性。虽然细胞中的总 F- 肌动蛋白含量保持不变,但它们的刚性大大降低。此外,wiskostatin 处理增强了抵抗流体剪切力的能力,同时降低了自发运动以及 cAMP 梯度中的趋化运动。我们的结果表明,wiskostatin 影响肌动蛋白皮质的机械完整性,从而降低其刚性并损害肌动蛋白驱动的力生成。