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Micro- and Macrorheological Properties of Actin Networks Effectively Cross-Linked by Depletion Forces

机译:肌动蛋白网络的微观和宏观流变特性通过耗竭力有效地交联。

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摘要

The structure and rheology of cytoskeletal networks are regulated by actin binding proteins. Aside from these specific interactions, depletion forces can also alter the properties of cytoskeletal networks. Here we demonstrate that the addition of poly(ethylene glycol) (PEG) as a depletion agent results not only in severe structural changes, but also in alterations in mechanical properties of actin solutions. In the plateau of the elastic modulus two regimes can be distinguished by micro and macrorheological methods. In the first, the elastic modulus increases only slightly with increasing depletion agent, whereas above a critical concentration c*, a strong increase of is observed in a distinct second regime. Microrheological data and electron microscopy images show a homogenous network of actin filaments in the first regime, whereas at higher PEG concentrations a network of actin bundles is observed. The concentration dependence of the plateau modulus G0, the shift in entanglement time τe, and the nonlinear response indicate that below c* the network becomes effectively cross-linked, whereas above c* G0(cPEG6k) is primarily determined by the network of bundles that exhibits a linearly increasing bundle thickness.
机译:肌动蛋白结合蛋白调节细胞骨架网络的结构和流变学。除了这些特定的相互作用,耗尽力还可以改变细胞骨架网络的特性。在这里,我们证明添加聚(乙二醇)(PEG)作为耗尽剂不仅会导致严重的结构变化,而且还会导致肌动蛋白溶液的机械性能发生变化。在弹性模量的平台上,可以通过微观和宏观流变方法来区分两种情况。在第一种情况下,弹性模量仅随耗尽剂的增加而略有增加,而在临界浓度c *以上时,在不同的第二种情况下观察到σ的强烈增加。微观流变数据和电子显微镜图像显示,在第一种方案中,肌动蛋白丝的网络均一,而在更高的PEG浓度下,观察到肌动蛋白束的网络。平稳模量G0的浓度依赖性,缠结时间τe的变化以及非线性响应表明,在c *以下,该网络有效地交联,而在c *以下G0(cPEG6k)主要由束网络决定,呈现出线性增加的束厚度。

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