Cattin Cedric J, Düggelin Marcel, Martinez-Martin David, Gerber Christoph, Müller Daniel J, Stewart Martin P
Department of Biosystems Science and Engineering, Eidgenössische Technische Hochschule (ETH) Zürich, 4058 Basel, Switzerland;
Zentrum für Mikroskopie, University of Basel, 4056 Basel, Switzerland;
Proc Natl Acad Sci U S A. 2015 Sep 8;112(36):11258-63. doi: 10.1073/pnas.1502029112. Epub 2015 Aug 25.
Despite the importance of mitotic cell rounding in tissue development and cell proliferation, there remains a paucity of approaches to investigate the mechanical robustness of cell rounding. Here we introduce ion beam-sculpted microcantilevers that enable precise force-feedback-controlled confinement of single cells while characterizing their progression through mitosis. We identify three force regimes according to the cell response: small forces (∼5 nN) that accelerate mitotic progression, intermediate forces where cells resist confinement (50-100 nN), and yield forces (>100 nN) where a significant decline in cell height impinges on microtubule spindle function, thereby inhibiting mitotic progression. Yield forces are coincident with a nonlinear drop in cell height potentiated by persistent blebbing and loss of cortical F-actin homogeneity. Our results suggest that a buildup of actomyosin-dependent cortical tension and intracellular pressure precedes mechanical failure, or herniation, of the cell cortex at the yield force. Thus, we reveal how the mechanical properties of mitotic cells and their response to external forces are linked to mitotic progression under conditions of mechanical confinement.
尽管有丝分裂细胞变圆在组织发育和细胞增殖中很重要,但研究细胞变圆的机械稳健性的方法仍然很少。在这里,我们介绍了离子束雕刻的微悬臂梁,它能够在表征单细胞有丝分裂进程的同时,对其进行精确的力反馈控制限制。根据细胞反应,我们确定了三种力状态:加速有丝分裂进程的小力(约5 nN)、细胞抵抗限制的中等力(50 - 100 nN)以及细胞高度显著下降影响微管纺锤体功能从而抑制有丝分裂进程的屈服力(>100 nN)。屈服力与细胞高度的非线性下降同时出现,这种下降由持续的气泡形成和皮质F - 肌动蛋白同质性丧失所增强。我们的结果表明,在屈服力下,细胞皮质的机械故障或疝出之前,肌动球蛋白依赖性皮质张力和细胞内压力会增加。因此,我们揭示了在机械限制条件下,有丝分裂细胞的机械特性及其对外部力的反应如何与有丝分裂进程相关联。