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在黏附簇成熟过程中,捕捉和滑动键的作用和动态不断演变。

Evolving roles and dynamics for catch and slip bonds during adhesion cluster maturation.

机构信息

Institute for Integrative Biology of the Cell (I2BC), CEA, CNRS, Université Paris-Sud, Université Paris-Saclay, 91198 Gif-sur-Yvette Cedex, France.

Department of Applied Physics, Eindhoven University of Technology, P.O. Box 513, NL-5600 MB Eindhoven, The Netherlands.

出版信息

Phys Rev E. 2021 Mar;103(3-1):032402. doi: 10.1103/PhysRevE.103.032402.

Abstract

Focal adhesions are the loci of cellular adhesion to the extracellular matrix. At these sites, various integrins forge connections between the intracellular cytoskeleton and the outside world; large patches of multiple types of integrins together grip hold of collagen, fibronectin, and other extracellular matrix components. A single focal adhesion will likely contain bonds whose lifetime increases with applied load (catch bonds), and bonds whose lifetime decreases with applied load (slip bonds). Prior work suggests that the combination of different types of integrins is essential for focal adhesion stability and mechanosensory functionality. In the present work, we investigate numerically the interplay between two distinct types of bonds, and we ask how the presence of slip bonds, in the same focal integrin cluster, augments the collective behavior of the catch bonds. We show that mixing these two components may increase the low-force mechanical integrity that may be lacking in pure-catch adhesions, while preserving the potential to strengthen the entire adhesion when a force is applied. We investigate the spatial distribution in mixed-integrin focal adhesions, and we show that the differential response to loading leads, via an excluded volume interaction, to a dependence of the individual integrin diffusivities on the applied load, an effect that has been reported in experiments.

摘要

黏着斑是细胞与细胞外基质黏附的部位。在这些部位,各种整合素将细胞内的细胞骨架与外部世界连接起来;大量不同类型的整合素一起抓住胶原蛋白、纤维连接蛋白和其他细胞外基质成分。一个单独的黏着斑可能包含随着施加的负载而增加寿命的键(捕获键),以及随着施加的负载而减少寿命的键(滑动键)。先前的工作表明,不同类型整合素的组合对于黏着斑的稳定性和机械敏感性功能至关重要。在本工作中,我们通过数值研究了两种不同类型键之间的相互作用,并探讨了在同一黏着斑整合素簇中存在滑动键如何增强捕获键的集体行为。我们表明,混合这两种成分可能会增加在纯捕获黏附中可能缺乏的低力机械完整性,同时在施加力时保持增强整个黏附的潜力。我们研究了混合整合素黏着斑中的空间分布,并表明对加载的差异响应通过排斥体积相互作用导致单个整合素扩散率对施加的负载的依赖性,这是实验中已经报道的效应。

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