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肌动蛋白丝在关联细胞核形状与细胞铺展中的作用。

Role of actin filaments in correlating nuclear shape and cell spreading.

作者信息

Vishavkarma Renu, Raghavan Swetavalli, Kuyyamudi Chandrashekar, Majumder Abhijit, Dhawan Jyotsna, Pullarkat Pramod A

机构信息

Soft Condensed Matter group, Raman Research Institute, Bangalore, Karnataka, India.

Institute for Stem Cell Biology and Regenerative Medicine, National Centre for Biological Sciences (TIFR), Bangalore, Karnataka, India.

出版信息

PLoS One. 2014 Sep 24;9(9):e107895. doi: 10.1371/journal.pone.0107895. eCollection 2014.

Abstract

It is well known that substrate properties like stiffness and adhesivity influence stem cell morphology and differentiation. Recent experiments show that cell morphology influences nuclear geometry and hence gene expression profile. The mechanism by which surface properties regulate cell and nuclear properties is only beginning to be understood. Direct transmission of forces as well as chemical signalling are involved in this process. Here, we investigate the formal aspect by studying the correlation between cell spreading and nuclear deformation using Mesenchymal stem cells under a wide variety of conditions. It is observed that a robust quantitative relation holds between the cell and nuclear projected areas, irrespective of how the cell area is modified or when various cytoskeletal or nuclear components are perturbed. By studying the role of actin stress fibers in compressing the nucleus we propose that nuclear compression by stress fibers can lead to enhanced cell spreading due to an interplay between elastic and adhesion factors. The significance of myosin-II in regulating this process is also explored. We demonstrate this effect using a simple technique to apply external compressive loads on the nucleus.

摘要

众所周知,诸如硬度和粘附性等底物特性会影响干细胞的形态和分化。最近的实验表明,细胞形态会影响细胞核的几何形状,进而影响基因表达谱。表面特性调节细胞和细胞核特性的机制才刚刚开始被理解。力的直接传递以及化学信号传导都参与了这一过程。在这里,我们通过研究在各种条件下使用间充质干细胞的细胞铺展与核变形之间的相关性来研究形式方面的问题。据观察,细胞和细胞核投影面积之间存在稳健的定量关系,无论细胞面积如何改变或各种细胞骨架或核成分何时受到干扰。通过研究肌动蛋白应力纤维在压缩细胞核中的作用,我们提出应力纤维对细胞核的压缩可由于弹性和粘附因子之间的相互作用而导致细胞铺展增强。还探讨了肌球蛋白-II在调节这一过程中的意义。我们使用一种简单的技术对细胞核施加外部压缩载荷来证明这种效应。

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