Willoughby Patrick Morley, Allen Molly, Yu Jessica, Korytnikov Roman, Chen Tianhui, Liu Yupeng, So Isis, Wan Haoyu, Macpherson Neil, Mitchell Jennifer A, Fernandez-Gonzalez Rodrigo, Bruce Ashley E E
Department of Cell and Systems Biology, University of Toronto, Toronto, Canada.
Ted Rogers Centre for Heart Research, Translational Biology and Engineering Program, University of Toronto, Toronto, Canada.
Elife. 2021 Mar 23;10:e66060. doi: 10.7554/eLife.66060.
In emerging epithelial tissues, cells undergo dramatic rearrangements to promote tissue shape changes. Dividing cells remain interconnected via transient cytokinetic bridges. Bridges are cleaved during abscission and currently, the consequences of disrupting abscission in developing epithelia are not well understood. We show that the Rab GTPase Rab25 localizes near cytokinetic midbodies and likely coordinates abscission through endomembrane trafficking in the epithelium of the zebrafish gastrula during epiboly. In maternal-zygotic Rab25a and Rab25b mutant embryos, morphogenic activity tears open persistent apical cytokinetic bridges that failed to undergo timely abscission. Cytokinesis defects result in anisotropic cell morphologies that are associated with a reduction of contractile actomyosin networks. This slows cell rearrangements and alters the viscoelastic responses of the tissue, all of which likely contribute to delayed epiboly. We present a model in which Rab25 trafficking coordinates cytokinetic bridge abscission and cortical actin density, impacting local cell shape changes and tissue-scale forces.
在新兴的上皮组织中,细胞会经历剧烈的重排以促进组织形状的改变。正在分裂的细胞通过短暂的胞质分裂桥保持相互连接。桥在脱离过程中被切断,目前,在发育中的上皮组织中破坏脱离的后果尚不清楚。我们发现,Rab GTP酶Rab25定位于胞质分裂中间体附近,可能在斑马鱼原肠胚外包期通过内膜运输协调上皮组织中的脱离过程。在母源合子Rab25a和Rab25b突变体胚胎中,形态发生活动撕开了未能及时脱离的持续存在的顶端胞质分裂桥。胞质分裂缺陷导致各向异性的细胞形态,这与收缩性肌动球蛋白网络的减少有关。这减缓了细胞重排并改变了组织的粘弹性反应,所有这些都可能导致外包延迟。我们提出了一个模型,其中Rab25运输协调胞质分裂桥的脱离和皮质肌动蛋白密度,影响局部细胞形状变化和组织尺度的力。