Max Planck Institute of Molecular Cell Biology and Genetics, 01307 Dresden, Germany.
Nature. 2010 Sep 30;467(7315):617-21. doi: 10.1038/nature09376. Epub 2010 Sep 19.
Asymmetric cell divisions are essential for the development of multicellular organisms. To proceed, they require an initially symmetric cell to polarize. In Caenorhabditis elegans zygotes, anteroposterior polarization is facilitated by a large-scale flow of the actomyosin cortex, which directs the asymmetry of the first mitotic division. Cortical flows appear in many contexts of development, but their underlying forces and physical principles remain poorly understood. How actomyosin contractility and cortical tension interact to generate large-scale flow is unclear. Here we report on the subcellular distribution of cortical tension in the polarizing C. elegans zygote, which we determined using position- and direction-sensitive laser ablation. We demonstrate that cortical flow is associated with anisotropies in cortical tension and is not driven by gradients in cortical tension, which contradicts previous proposals. These experiments, in conjunction with a theoretical description of active cortical mechanics, identify two prerequisites for large-scale cortical flow: a gradient in actomyosin contractility to drive flow and a sufficiently large viscosity of the cortex to allow flow to be long-ranged. We thus reveal the physical requirements of large-scale intracellular cortical flow that ensure the efficient polarization of the C. elegans zygote.
不对称细胞分裂对于多细胞生物的发育至关重要。为了进行分裂,它们需要一个最初对称的细胞来极化。在秀丽隐杆线虫的合子中,前后极性的形成是通过肌动球蛋白皮层的大规模流动来促进的,这种流动指导了第一次有丝分裂的不对称分裂。皮层流动出现在许多发育的背景下,但它们的潜在力和物理原理仍知之甚少。肌动球蛋白收缩力和皮层张力如何相互作用以产生大规模流动尚不清楚。在这里,我们报告了在极化的秀丽隐杆线虫合子中皮层张力的亚细胞分布,我们使用位置和方向敏感的激光消融来确定。我们证明皮层流动与皮层张力的各向异性有关,而不是由皮层张力的梯度驱动的,这与之前的提议相矛盾。这些实验,结合对活性皮层力学的理论描述,确定了大规模皮层流动的两个前提条件:肌动球蛋白收缩力的梯度来驱动流动,以及足够大的皮层粘度以允许长程流动。因此,我们揭示了确保秀丽隐杆线虫合子有效极化的大规模细胞内皮层流动的物理要求。