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Mechanical Properties of Actin Stress Fibers in Living Cells

机译:肌动蛋白应力纤维在活细胞中的力学性能

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摘要

Actin stress fibers (SFs) play an important role in many cellular functions, including morphological stability, adhesion, and motility. Because of their central role in force transmission, it is important to characterize the mechanical properties of SFs. However, most of the existing studies focus on properties of whole cells or of actin filaments isolated outside cells. In this study, we explored the mechanical properties of individual SFs in living endothelial cells by nanoindentation using an atomic force microscope. Our results demonstrate the pivotal role of SF actomyosin contractile level on mechanical properties. In the same SF, decreasing contractile level with 10 μM blebbistatin decreased stiffness, whereas increasing contractile level with 2 nM calyculin A increased stiffness. Incrementally stretching and indenting SFs made it possible to determine stiffness as a function of strain level and demonstrated that SFs have nearly linear stress-stain properties in the baseline state but nonlinear properties at a lower contractile level. The stiffnesses of peripheral and central portions of the same SF, which were nearly the same in the baseline state, became markedly different after contractile level was increased with calyculin A. Because these results pertain to effects of interventions in the same SF in a living cell, they provide important new understanding about cell mechanics.
机译:肌动蛋白应激纤维(SFs)在许多细胞功能中发挥重要作用,包括形态稳定性,粘附性和运动性。由于它们在力传递中的核心作用,因此表征SF的机械性能非常重要。然而,大多数现有研究集中于整个细胞或细胞外分离的肌动蛋白丝的特性。在这项研究中,我们使用原子力显微镜通过纳米压痕探索了活内皮细胞中单个SF的机械性能。我们的结果证明了SF肌动球蛋白收缩水平对机械性能的关键作用。在相同的SF中,用10μMblebbistatin降低收缩水平会降低刚度,而使用2 nM calyculin A会增加收缩水平会提高刚度。逐渐拉伸和缩进SF使得确定刚度作为应变水平的函数成为可能,并证明SF在基线状态下具有近乎线性的应力-染色特性,而在较低的收缩水平下具有非线性特性。在使用钙霉素A增加收缩水平后,同一SF的外周和中央部分的刚度在基线状态几乎相同,但变得明显不同。因为这些结果与活细胞中同一SF的干预作用有关,它们提供了有关细胞力学的重要新认识。

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