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Mechanical oscillation of dynamic microtubule rings

机译:动态微管戒指的机械振荡

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Mechanical oscillation is a ubiquitous phenomenon observed in living systems, which emerges from a wide range of well-organized self-assembled structures, and plays important roles in many biological processes. Although considerable efforts have been devoted to demonstrate the mechanical oscillation of organized structures produced through self-assembly in vitro , it has rarely been documented. Here we report the mechanical oscillation of ring-shaped structures, composed of multiple microtubule (MT) filaments, obtained through energy dissipative self-assembly of MT filaments at an air-buffer interface. The MT rings exhibit autonomous oscillation manifested through periodic changes in the size and shape. We propose the oscillation of the MT rings is attributed to mechanical feedback arising from accumulated stress induced by the driving force of the motor protein system. This work might offer new insights to our current understanding on the mechanical feedback driven oscillation of organized structures and its effect on dynamic processes in living systems.
机译:机械振荡是一种在生活系统中观察到的无处不在的现象,从各种各样的良好组织的自组装结构中出现,并在许多生物过程中起重要作用。虽然已经致力于展示通过体外自组装产生的有组织结构的机械振荡的努力,但它很少被记录。在这里,我们报告了由多个微管(MT)长丝组成的环形结构的机械振荡,通过在空气缓冲界面处通过MT长丝的能量耗散自组装获得。 MT环表现出自主振荡,通过周期性变化,尺寸和形状的周期性变化。我们提出MT环的振荡归因于由由电动机蛋白质系统的驱动力引起的累积应力产生的机械反馈。这项工作可能对我们目前的了解有关机械反馈驱动的振荡的新见解及其对生物系统中动态过程的影响。

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