Basic Sciences Division, Fred Hutchinson Cancer Center, Seattle, WA 98109, USA.
Basic Sciences Division, Fred Hutchinson Cancer Center, Seattle, WA 98109, USA.
Cell Rep. 2024 May 28;43(5):114215. doi: 10.1016/j.celrep.2024.114215. Epub 2024 May 9.
Cells have robust wound repair systems to prevent further damage or infection and to quickly restore cell cortex integrity when exposed to mechanical and chemical stress. Actomyosin ring formation and contraction at the wound edge are major events during closure of the plasma membrane and underlying cytoskeleton during cell wound repair. Here, we show that all five Drosophila Septins are required for efficient cell wound repair. Based on their different recruitment patterns and knockdown/mutant phenotypes, two distinct Septin complexes, Sep1/Sep2/Pnut and Sep4/Sep5/Pnut, are assembled to regulate actin ring assembly, contraction, and remodeling during the repair process. Intriguingly, we find that these two Septin complexes have different F-actin bending activities. In addition, we find that Anillin regulates the recruitment of only one of two Septin complexes upon wounding. Our results demonstrate that two functionally distinct Septin complexes work side by side to discretely regulate actomyosin ring dynamics during cell wound repair.
细胞具有强大的伤口修复系统,可防止进一步的损伤或感染,并在受到机械和化学应激时迅速恢复细胞膜和下细胞骨架的细胞皮层完整性。在细胞膜和下细胞骨架的细胞伤口修复过程中,肌动球蛋白环的形成和伤口边缘的收缩是主要事件。在这里,我们表明果蝇的所有五个 Septin 都需要有效的细胞伤口修复。基于它们不同的募集模式和敲低/突变表型,两个不同的 Septin 复合物 Sep1/Sep2/Pnut 和 Sep4/Sep5/Pnut 被组装在一起,以调节修复过程中的肌动球蛋白环的组装、收缩和重塑。有趣的是,我们发现这两个 Septin 复合物具有不同的 F-肌动蛋白弯曲活性。此外,我们发现 Anillin 在受到伤害时仅调节两个 Septin 复合物之一的募集。我们的结果表明,两个功能不同的 Septin 复合物协同工作,在细胞伤口修复过程中离散地调节肌动球蛋白环动力学。