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Geometric somersaults of a polymer chain through cyclic twisting motions

机译:聚合物链的几何翻盖通过循环扭曲运动

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This study explores the significance of geometric angle shifts, which we call geometric somersaults, arising from cyclic twisting motions of a polymer chain. A five-bead polymer chain serves as a concise and minimal model of a molecular shaft throughout this study.We first show that this polymer chain can change its orientation about its longitudinal axis largely, e.g., 120°, under conditions of zero total angular momentum by changing the two dihedral angles in a cyclic manner. This phenomenon is an example of the so-called “falling cat” phenomenon, where a falling cat undergoes a geometric somersault by changing its body shape under conditions of zero total angular momentum. We then extend the geometric somersault of the polymer chain to a noisy and viscous environment, where the polymer chain is steered by external driving forces. This extension shows that the polymer chain can achieve an orientation change keeping its total angular momentum and total external torque fluctuating around zero in a noisy and viscous environment. As an application, we argue that the geometric somersault of the polymer chain by 120° may serve as a prototypical and coarse-grained model for the rotary motion of the central shaft of ATP synthase (FOF1-ATPase). This geometric somersault is in clear contrast to the standard picture for the rotary motion of the central shaft as a rigid body, which generally incurs nonzero total angular momentum and nonzero total external torque. The power profile of the geometric somersault implies a preliminary mechanism for elastic power transmission. The results of this study may be of fundamental interest in twisting and rotary motions of biomolecules.
机译:本研究探讨了我们呼叫几何翻盖的几何角度偏移的重要性,这些旋转六十多象旋转,由聚合物链的循环捻运动产生。在本研究中,五珠聚合物链用作分子轴的简洁和最小模型。首先表明该聚合物链可以在很大程度上大致改变其纵向轴线的取向,例如120°,在零总角度的条件下通过以循环方式改变两个二面角。这种现象是所谓的“下降猫”现象的一个例子,其中落猫通过在零总角度的条件下改变其体形来经历几何翻盖。然后,我们将聚合物链的几何翻盖延伸到嘈杂和粘性环境,其中聚合物链由外部驱动力转向。该延伸表明,聚合物链可以达到噪声和粘性环境中的总角动量和全部外部扭矩的总角动量和全部外部扭矩的总扭矩。作为申请,我们认为聚合物链的几何翻盖120°可以用作ATP合酶(FOF1-ATP酶)的中心轴的旋转运动的原型和粗粒模型。该几何翻盖与中心轴的旋转运动作为刚体的标准图像明显对比,这通常会引起非零总角动量和非零总扭矩。几何翻盖的功率曲线意味着弹性动力传输的初步机构。该研究的结果可能对生物分子的扭曲和旋转运动来说是根本的兴趣。

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