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底物刚度和肌动球蛋白收缩性对单个黏着斑处力传递与纽蛋白-桩蛋白募集之间偶联的影响。

Effects of substrate stiffness and actomyosin contractility on coupling between force transmission and vinculin-paxillin recruitment at single focal adhesions.

作者信息

Zhou Dennis W, Lee Ted T, Weng Shinuo, Fu Jianping, García Andrés J

机构信息

Wallace H. Coulter Department of Biomedical Engineering, Interdisciplinary Bioengineering Graduate Program, Georgia Institute of Technology, Atlanta, GA 30332.

Woodruff School of Mechanical Engineering, Petit Institute for Bioengineering and Bioscience, Georgia Institute of Technology, Atlanta, GA 30332.

出版信息

Mol Biol Cell. 2017 Jul 7;28(14):1901-1911. doi: 10.1091/mbc.E17-02-0116. Epub 2017 May 3.

Abstract

Focal adhesions (FAs) regulate force transfer between the cytoskeleton and ECM-integrin complexes. We previously showed that vinculin regulates force transmission at FAs. Vinculin residence time in FAs correlated with applied force, supporting a mechanosensitive model in which forces stabilize vinculin's active conformation to promote force transfer. In the present study, we examined the relationship between traction force and vinculin-paxillin localization to single FAs in the context of substrate stiffness and actomyosin contractility. We found that vinculin and paxillin FA area did not correlate with traction force magnitudes at single FAs, and this was consistent across different ECM stiffness and cytoskeletal tension states. However, vinculin residence time at FAs varied linearly with applied force for stiff substrates, and this was disrupted on soft substrates and after contractility inhibition. In contrast, paxillin residence time at FAs was independent of local applied force and substrate stiffness. Paxillin recruitment and residence time at FAs, however, were dependent on cytoskeletal contractility on lower substrate stiffness values. Finally, substrate stiffness and cytoskeletal contractility regulated whether vinculin and paxillin turnover dynamics are correlated to each other at single FAs. This analysis sheds new insights on the coupling among force, substrate stiffness, and FA dynamics.

摘要

黏着斑(FAs)调节细胞骨架与细胞外基质整合素复合物之间的力传递。我们之前表明纽蛋白调节黏着斑处的力传递。纽蛋白在黏着斑中的驻留时间与施加的力相关,支持一种机械敏感模型,即力稳定纽蛋白的活性构象以促进力传递。在本研究中,我们在底物硬度和肌动球蛋白收缩性的背景下,研究了单个黏着斑上牵引力与纽蛋白 - 桩蛋白定位之间的关系。我们发现,在单个黏着斑上,纽蛋白和桩蛋白的黏着斑面积与牵引力大小不相关,并且在不同的细胞外基质硬度和细胞骨架张力状态下都是一致的。然而,对于硬底物,纽蛋白在黏着斑处的驻留时间随施加的力呈线性变化,而在软底物上以及收缩性受到抑制后这种关系被破坏。相比之下,桩蛋白在黏着斑处的驻留时间与局部施加的力和底物硬度无关。然而,在较低底物硬度值下,桩蛋白在黏着斑处的募集和驻留时间取决于细胞骨架的收缩性。最后,底物硬度和细胞骨架收缩性调节了在单个黏着斑上纽蛋白和桩蛋白的周转动力学是否相互关联。该分析为力、底物硬度和黏着斑动力学之间的耦合提供了新的见解。

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