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WAVE1 and WAVE2 have distinct and overlapping roles in controlling actin assembly at the leading edge

机译:Wave1和Wave2具有不同的和重叠的角色,在主导边缘控制肌动蛋白组件

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摘要

SCAR/WAVE proteins and Arp2/3 complex assemble branched actin networks at the leading edge. Two isoforms of SCAR/WAVE, WAVE1 and WAVE2, reside at the leading edge, yet it has remained unclear whether they perform similar or distinct roles. Further, there have been conflicting reports about the Arp2/3-independent biochemical activities of WAVE1 on actin filament elongation. To investigate this in vivo, we knocked out WAVE1 and WAVE2 genes, individually and together, in B16-F1 melanoma cells. We demonstrate that WAVE1 and WAVE2 are redundant for lamellipodia formation and motility. However, there is a significant decrease in the rate of leading edge actin extension in WAVE2 KO cells, and an increase in WAVE1 KO cells. The faster rates of actin extension in WAVE1 KO cells are offset by faster retrograde flow, and therefore do not translate into faster lamellipodium protrusion. Thus, WAVE1 restricts the rate of actin extension at the leading edge, and appears to couple actin networks to the membrane to drive protrusion. Overall, these results suggest that WAVE1 and WAVE2 have redundant roles in promoting Arp2/3-dependent actin nucleation and lamellipodia formation, but distinct roles in controlling actin network extension and harnessing network growth to cell protrusion.
机译:瘢痕/波蛋白和ARP2 / 3复合物组装在前沿的分支肌动蛋白网络。两种同种型瘢痕/波,波浪1和Wave2,驻留在前沿,但它仍然尚不清楚他们是否执行类似或不同的角色。此外,关于肌动蛋白长丝伸长的波1的ARP2 / 3独立生化活性存在矛盾的报道。为了在体内调查这一点,我们在B16-F1黑色素瘤细胞中单独地和一起敲掉Wav1和Wave2基因。我们证明Wave1和Wave2对于Lamellipodia形成和运动是多余的。然而,Wave2Ko细胞中的前缘肌动蛋白延伸的前沿速度的速率显着降低,以及波浪1ko细胞的增加。波动KO细胞中的肌动蛋白延伸的速度更快地偏移,逆行流程更快,因此不要转化为更快的层状突起。因此,Wave1限制了前沿的肌动蛋白延伸的速率,并且看起来将肌动蛋白网络耦合到膜以驱动突起。总体而言,这些结果表明Wave1和Wave2在促进ARP2 / 3依赖性肌动蛋白成核和层状斑层形成方面具有冗余作用,而是在控制肌动蛋白网络延伸和利用网络增长到细胞突起的不同作用。

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