Li Yu-Long, Shao Ming, Shi De-Li
School of Life Sciences, Shandong University, 27, Shanda Nan Road, Jinan 250100, China.
School of Life Sciences, Shandong University, 27, Shanda Nan Road, Jinan 250100, China; Sorbonne Universités, UPMC Univ Paris 06, CNRS UMR7622, IBPS-Developmental Biology Laboratory, 75005 Paris, France.
Biochem Biophys Res Commun. 2017 Aug 26;490(3):1059-1065. doi: 10.1016/j.bbrc.2017.06.165. Epub 2017 Jun 28.
Dynamic cytoskeleton organization is essential for polarized cell behaviours in a wide variety of morphogenetic events. In zebrafish, epiboly involves coordinated cell shape changes and expansion of cell layers to close the blastopore, but many important regulatory aspects are still unclear. Especially, the spatio-temporal regulation and function of actin structures remain to be determined for a better understanding of the mechanisms that coordinate epiboly movement. Here we show that Rac1 signalling, likely functions downstream of phosphatiditylinositol-3 kinase, is required for F-actin organization during epiboly progression in zebtafish. Using a dominant negative mutant of Rac1 and specific inhibitors to block the activation of this pathway, we find that marginal contractile actin ring is sensitive to inhibition of Rac1 signalling. In particular, we identify a novel function for this actin structure in retaining the external yolk syncytial nuclei within the margin of enveloping layer for coordinated movement toward the vegetal pole. Furthermore, we find that F-actin bundles, progressively formed in the vegetal cortex of the yolk cell, act in concert with marginal actin ring and play an active role in pulling external yolk syncytial nuclei toward the vegetal pole direction. This study uncovers novel roles of different actin structures in orchestrating epiboly movement. It helps to provide insight into the mechanisms regulating cellular polarization during early development.
动态细胞骨架组织对于多种形态发生事件中的极化细胞行为至关重要。在斑马鱼中,外包涉及协调的细胞形状变化和细胞层扩展以关闭胚孔,但许多重要的调控方面仍不清楚。特别是,肌动蛋白结构的时空调节和功能仍有待确定,以便更好地理解协调外包运动的机制。在这里,我们表明,Rac1信号可能在磷脂酰肌醇-3激酶下游发挥作用,是斑马鱼外包进程中F-肌动蛋白组织所必需的。使用Rac1的显性负性突变体和特异性抑制剂来阻断该途径的激活,我们发现边缘收缩性肌动蛋白环对Rac1信号的抑制敏感。特别是,我们确定了这种肌动蛋白结构的一种新功能,即保持外部卵黄多核体细胞核在包被层边缘内,以便向植物极协调移动。此外,我们发现,在卵黄细胞植物皮质中逐渐形成的F-肌动蛋白束,与边缘肌动蛋白环协同作用,并在将外部卵黄多核体细胞核拉向植物极方向方面发挥积极作用。这项研究揭示了不同肌动蛋白结构在协调外包运动中的新作用。它有助于深入了解早期发育过程中调节细胞极化的机制。