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底物硬度对细胞核形态的调控

Modulation of Nuclear Shape by Substrate Rigidity.

作者信息

Lovett David B, Shekhar Nandini, Nickerson Jeffrey A, Roux Kyle J, Lele Tanmay P

机构信息

Department of Chemical Engineering, University of Florida, Bldg. 723, Gainesville, FL 32611, USA.

出版信息

Cell Mol Bioeng. 2013 Jun 1;6(2):230-238. doi: 10.1007/s12195-013-0270-2.

Abstract

The nucleus is mechanically coupled to the three cytoskeletal elements in the cell via linkages maintained by the LINC complex (for Linker of Nucleoskeleton to Cyto-skeleton). It has been shown that mechanical forces from the extracellular matrix (ECM) can be transmitted through the cytoskeleton to the nuclear surface. Here we quantified nuclear shape in NIH 3T3 fibroblasts on polyacrylamide gels with a controlled degree of cross-linking. On soft substrates with a Young's modulus of 0.4 kPa, the nucleus appeared rounded in its vertical cross-section, while on stiff substrates (308 kPa), the nucleus appears more flattened. Over-expression of dominant negative Klarsicht ANC-1 Syne Homology (KASH) domains, which disrupts the LINC complex, eliminated the sensitivity of nuclear shape to substrate rigidity; myosin inhibition had similar effects. GFP-KASH4 over-expression altered the rigidity dependence of cell motility and cell spreading. Taken together, our results suggest that nuclear shape is modulated by substrate rigidity-induced changes in actomyosin tension, and that a mechanically integrated nucleus-cytoskeleton is required for rigidity sensing. These results are significant because they suggest that substrate rigidity can potentially control nuclear function and hence cell function.

摘要

细胞核通过由LINC复合体(核骨架与细胞骨架连接体)维持的连接,与细胞中的三种细胞骨架成分机械耦合。研究表明,来自细胞外基质(ECM)的机械力可通过细胞骨架传递至核表面。在此,我们对具有可控交联度的聚丙烯酰胺凝胶上的NIH 3T3成纤维细胞的核形状进行了量化。在杨氏模量为0.4 kPa的软基质上,细胞核在其垂直截面呈圆形,而在硬基质(308 kPa)上,细胞核显得更为扁平。显性负性Klarsicht ANC-1 Syne同源结构域(KASH)的过表达会破坏LINC复合体,消除核形状对基质刚性的敏感性;抑制肌球蛋白也有类似效果。GFP-KASH4的过表达改变了细胞运动性和细胞铺展对刚性的依赖性。综合来看,我们的结果表明,核形状受基质刚性诱导的肌动球蛋白张力变化的调节,并且刚性感知需要机械整合的细胞核 - 细胞骨架。这些结果意义重大,因为它们表明基质刚性可能潜在地控制核功能,进而控制细胞功能。

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Modulation of Nuclear Shape by Substrate Rigidity.底物硬度对细胞核形态的调控
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