间期微管解体是一个信号提示,驱动细胞在有丝分裂进入时成圆

Kévin Leguay, Barbara Decelle, Islam E. Elkholi, M. Bouvier, J. Côté, Sébastien Carréno
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引用次数: 4

摘要

在有丝分裂进入时,皮层肌动蛋白细胞骨架的重组对于增加膜张力以使细胞圆缩是必不可少的1,2。这种球形对于有丝分裂纺锤体的生物发生和组织是必要的。Ezrin, Radixin, Moesin (ERM)家族蛋白通过将肌动球蛋白力连接到质膜,在有丝分裂形态发生中发挥重要作用2,3,7-10。虽然erm驱动中期细胞圆代,但在有丝分裂中促使其构象激活的细胞周期信号尚不清楚11。我们使用新型ERM生物传感器筛选了一个小分子库12,我们意外地发现,分解微管的药物可以促进ERM的激活。值得注意的是,细胞在进入有丝分裂时分解了它们的间期微管。我们进一步发现,这种微管的分解作为一个细胞周期信号,指导ERM激活和中期细胞围成。我们发现GEF-H1,一种被微管结合抑制的Rho-GEF,在微管分解的下游通过RhoA及其激酶效应物SLK激活erm。此外,我们证明GEF-H1和另一种负责产生有丝分裂肌动球蛋白的Rho-GEF Ect2共同作用,驱动中期ERM激活和细胞围成。总之,我们报道微管解体作为一个细胞周期信号,触发一个信号网络,确保肌动球蛋白的力量有效地整合在质膜上,促进细胞在有丝分裂进入时成圆。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Interphase microtubule disassembly is a signaling cue that drives cell rounding at mitotic entry
Reorganization of the cortical actin cytoskeleton at mitotic entry is essential to increase membrane tension for cell rounding1,2. This spherical shape is necessary for the biogenesis and organization of the mitotic spindle2-6. Proteins of the Ezrin, Radixin, Moesin (ERM) family play essential roles in mitotic morphogenesis by linking actomyosin forces to the plasma membrane2,3,7-10. While ERMs drive metaphase cell rounding, the cell-cycle signals that prompt their conformational activation in mitosis are unknown11. We screened a library of small molecules using novel ERM biosensors12 and we unexpectedly found that drugs that disassemble microtubules promote ERM activation. Remarkably, cells disassemble their interphase microtubules while entering mitosis13. We further discovered that this disassembly of microtubules acts as a cell-cycle signal that directs ERM activation and metaphase cell rounding. We show that GEF-H1, a Rho-GEF inhibited by microtubule binding, acts downstream of microtubule disassembly to activate ERMs via RhoA and its kinase effector SLK. In addition, we demonstrate that GEF-H1 and Ect2, another Rho-GEF responsible for the generation of mitotic actomyosin forces6,14, act together to drive metaphase ERM activation and cell rounding. In summary, we report microtubule disassembly as a cell cycle signal that triggers a signaling network ensuring that actomyosin forces are efficiently integrated at the plasma membrane to promote cell rounding at mitotic entry.
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