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Moving Cell Boundaries Drive Nuclear Shaping during Cell Spreading

机译:在细胞扩散过程中移动的细胞边界驱动核的形成

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摘要

The nucleus has a smooth, regular appearance in normal cells, and its shape is greatly altered in human pathologies. Yet, how the cell establishes nuclear shape is not well understood. We imaged the dynamics of nuclear shaping in NIH3T3 fibroblasts. Nuclei translated toward the substratum and began flattening during the early stages of cell spreading. Initially, nuclear height and width correlated with the degree of cell spreading, but over time, reached steady-state values even as the cell continued to spread. Actomyosin activity, actomyosin bundles, microtubules, and intermediate filaments, as well as the LINC complex, were all dispensable for nuclear flattening as long as the cell could spread. Inhibition of actin polymerization as well as myosin light chain kinase with the drug ML7 limited both the initial spreading of cells and flattening of nuclei, and for well-spread cells, inhibition of myosin-II ATPase with the drug blebbistatin decreased cell spreading with associated nuclear rounding. Together, these results show that cell spreading is necessary and sufficient to drive nuclear flattening under a wide range of conditions, including in the presence or absence of myosin activity. To explain this observation, we propose a computational model for nuclear and cell mechanics that shows how frictional transmission of stress from the moving cell boundaries to the nuclear surface shapes the nucleus during early cell spreading. Our results point to a surprisingly simple mechanical system in cells for establishing nuclear shapes.
机译:核在正常细胞中具有光滑规则的外观,在人类病理中其形状已大大改变。然而,细胞如何建立核形状还没有被很好地理解。我们成像了NIH3T3成纤维细胞中核成形的动力学。细胞核向着基底平移并在细胞扩散的初期开始变平。最初,核的高度和宽度与细胞扩散的程度相关,但随着时间的流逝,即使细胞继续扩散,核的高度和宽度也达到稳态。只要细胞能够扩散,放线菌素的活性,放线菌素的束,微管和中间丝以及LINC复合物对于核扁平化都是必不可少的。用药物ML7抑制肌动蛋白的聚合以及肌球蛋白轻链激酶不仅限制了细胞的初始扩散和细胞核的扁平化,而且对于扩散良好的细胞,用blebbistatin抑制肌球蛋白II ATP酶可减少细胞扩散并伴有相关核四舍五入。总之,这些结果表明,在广泛的条件下,包括在存在或不存在肌球蛋白活性的情况下,细胞扩散是驱动核扁平化的必要条件和充分条件。为了解释这一发现,我们提出了一个用于核和细胞力学的计算模型,该模型显示了在早期细胞扩散过程中,从移动的细胞边界到核表面的应力的摩擦传递是如何形成核的。我们的研究结果表明,细胞中用于建立核形状的机械系统非常简单。

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