Zhang Pu, Medwig-Kinney Taylor N, Breiner Eleanor A, Perez Jadyn M, Song April N, Goldstein Bob
Biology Department, University of North Carolina at Chapel Hill, Chapel Hill, NC, USA.
Curriculum in Cell Biology and Physiology, The University of North Carolina at Chapel Hill, Chapel Hill, NC, USA.
bioRxiv. 2024 Sep 23:2024.09.23.614059. doi: 10.1101/2024.09.23.614059.
Apical constriction is a critical cell shape change that bends tissues. How precisely-localized actomyosin regulators drive apical constriction remains poorly understood. gastrulation provides a valuable model to address this question. The Arp2/3 complex is essential in gastrulation. To understand how Arp2/3 is locally regulated, we imaged embryos with endogenously-tagged Arp2/3 and its nucleation-promoting factors (NPFs). The three NPFs - WAVE, WASP, and WASH - colocalized with Arp2/3 and controlled Arp2/3 localization at distinct subcellular locations. We exploited this finding to study distinct populations of Arp2/3 and found that only WAVE depletion caused penetrant gastrulation defects. WAVE localized basolaterally with Arp2/3 at cell-cell contacts, dependent on CED-10/Rac. Establishing ectopic cell contacts recruited WAVE and Arp2/3, identifying contact as a symmetry-breaking cue for localization of these proteins. These results suggest that cell-cell signaling via Rac activates WAVE and Arp2/3 basolaterally, and that basolateral Arp2/3 is important for apical constriction.
顶端收缩是一种使组织弯曲的关键细胞形状变化。精确定位的肌动球蛋白调节因子如何驱动顶端收缩仍知之甚少。原肠胚形成提供了一个解决这个问题的有价值模型。Arp2/3复合体在原肠胚形成中至关重要。为了解Arp2/3是如何被局部调控的,我们对内源标记的Arp2/3及其成核促进因子(NPFs)的胚胎进行了成像。三种NPFs——WAVE、WASP和WASH——与Arp2/3共定位,并在不同的亚细胞位置控制Arp2/3的定位。我们利用这一发现研究了不同群体的Arp2/3,发现只有WAVE缺失会导致明显的原肠胚形成缺陷。WAVE在细胞间接触部位与Arp2/3一起定位于基底外侧,依赖于CED-10/Rac。建立异位细胞接触会招募WAVE和Arp2/3,将接触确定为这些蛋白质定位的对称破缺线索。这些结果表明,通过Rac的细胞间信号传导在基底外侧激活WAVE和Arp2/3,并且基底外侧的Arp2/3对顶端收缩很重要。