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Thermal fluctuations of grafted microtubules provide evidence of a length-dependent persistence length

机译:接枝微管的热波动提供了与长度有关的持续长度的证据

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摘要

Microtubules are hollow cylindrical structures that constitute one of the three major classes of cytoskeletal filaments. On the mesoscopic length scale of a cell, their material properties are characterized by a single stiffness parameter, the persistence length l(p). Its value, in general, depends on the microscopic interactions between the constituent tubulin dimers and the architecture of the microtubule. Here, we use single-particle tracking methods combined with a fluctuation analysis to systematically study the dependence of l(p) on the total filament length L. Microtubules are grafted to a substrate with one end free to fluctuate in three dimensions. A fluorescent bead is attached proximally to the free tip and is used to record the thermal fluctuations of the microtubule's end. The position distribution functions obtained with this assay allow the precise measurement of l(p) for microtubules of different contour length L. Upon varying L between 2.6 and 47.5 mu m, we find a systematic increase of l(p) from 110 to 5,035 mu m. At the same time we verify that, for a given filament length, the persistence length is constant over the filament within the experimental accuracy. We interpret this length dependence as a consequence of a nonnegligible shear deflection determined by sub-nanometer relative displacement of adjacent protofilaments. Our results may shine new light on the function of microtubules as sophisticated nanometer-sized molecular machines and give a unified explanation of seemingly uncorrelated spreading of microtubules' stiffness previously reported in literature.
机译:微管是中空的圆柱结构,构成细胞骨架丝的三大类之一。在单元的介观长度尺度上,其材料特性由单个刚度参数(持久性长度l(p))表征。通常,其值取决于组成的微管蛋白二聚体与微管结构之间的微观相互作用。在这里,我们使用单粒子跟踪方法与波动分析相结合,系统地研究l(p)对总长丝长度L的依赖性。将微管移植到底物上,其一端自由在三个方向上波动。荧光珠附着在自由末端的近端,用于记录微管末端的热波动。通过该测定获得的位置分布函数可以精确测量不同轮廓长度L的微管的l(p)。在L介于2.6和47.5μm之间变化时,我们发现l(p)的系统性增加从110增加到5,035μ米同时,我们验证了对于给定的灯丝长度,在实验精度范围内,持续长度在灯丝上是恒定的。我们将这种长度依赖性解释为不可忽略的剪切变形的结果,该剪切变形由相邻原型丝的亚纳米相对位移确定。我们的研究结果可能会为微管作为复杂的纳米级分子机器的功能提供新的启示,并为以前文献中报道的微管刚度看似不相关的扩散提供统一解释。

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