首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Torsional rigidity of single actin filaments and actin–actin bond breaking force under torsion measured directly by in vitro micromanipulation
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Torsional rigidity of single actin filaments and actin–actin bond breaking force under torsion measured directly by in vitro micromanipulation

机译:单肌动蛋白丝和肌动蛋白–肌动蛋白的扭转刚度 扭转下的粘结破坏力直接由 体外显微操作

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摘要

Knowledge of the elastic properties of actin filaments is crucial for considering its role in muscle contraction, cellular motile events, and formation of cell shape. The stiffness of actin filaments in the directions of stretching and bending has been determined. In this study, we have directly determined the torsional rigidity and breaking force of single actin filaments by measuring the rotational Brownian motion and tensile strength using optical tweezers and microneedles, respectively. Rotational angular fluctuations of filaments supplied the torsional rigidity as (8.0 ± 1.2) × 10−26 Nm2. This value is similar to that deduced from the longitudinal rigidity, assuming the actin filament to be a homogeneous rod. The breaking force of the actin–actin bond was measured while twisting a filament through various angles using microneedles. The breaking force decreased greatly under twist, e.g., from 600–320 pN when filaments were turned through 90°, independent of the rotational direction. Our results indicate that an actin filament exhibits comparable flexibility in the rotational and longitudinal directions, but breaks more easily under torsional load.
机译:肌动蛋白丝的弹性特性的知识对于考虑其在肌肉收缩,细胞运动事件和细胞形状形成中的作用至关重要。已经确定了肌动蛋白丝在拉伸和弯曲方向上的刚度。在这项研究中,我们分别通过使用光学镊子和微针测量旋转布朗运动和拉伸强度来直接确定单肌动蛋白丝的抗扭刚度和断裂力。长丝的旋转角度波动提供了(8.0±1.2)×10 −26 Nm 2 的扭转刚度。假定肌动蛋白丝为均质棒,则该值类似于从纵向刚度得出的值。使用微针将细丝扭绞成不同角度时,可以测量肌动蛋白-肌动蛋白键的断裂力。扭转时,断裂力大大降低,例如,当将长丝旋转90°时,断裂强度从600-320 pN减小,而与旋转方向无关。我们的结果表明,肌动蛋白丝在旋转和纵向方向上都表现出相当的柔韧性, 但在扭转载荷下更容易断裂。

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