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Cilia oscillations

机译:纤毛振荡

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摘要

Cilia, or eukaryotic flagella, are microscopic active filaments expressed on the surface of many eukaryotic cells, from single-celled protozoa to mammalian epithelial surfaces. Cilia are characterized by a highly conserved and intricate internal structure in which molecular motors exert forces on microtubule doublets causing cilia oscillations. The spatial and temporal regulations of this molecular machinery are not well understood. Several theories suggest that geometric feedback control from cilium deformations to molecular activity is needed. Here, we implement a recent sliding control model, where the unbinding of molecular motors is dictated by the sliding motion between microtubule doublets. We investigate the waveforms exhibited by the model cilium, as well as the associated molecular motor dynamics, for hinged and clamped boundary conditions. Hinged filaments exhibit base-to-tip oscillations while clamped filaments exhibit both base-to-tip and tip-to-base oscillations. We report the change in oscillation frequencies and amplitudes as a function of motor activity and sperm number, and we discuss the validity of these results in the context of experimental observations of cilia behaviour. This article is part of the Theo Murphy meeting issue 'Unity and diversity of cilia in locomotion and transport'.
机译:纤毛或真核鞭毛,是从单细胞原生动物到哺乳动物上皮表面的单细胞原生动物的许多真核细胞表面上表达的微观活性长丝。 Cilia的特征在于高度保守和复杂的内部结构,其中分子电机对纤毛振荡的微管倍增的力施加力。该分子机械的空间和时间法规尚不清楚。几个理论表明需要从纤毛纤维变形到分子活性的几何反馈控制。这里,我们实现了最近的滑动控制模型,其中分子电动机的剥离由微管倍增的滑动运动决定。我们研究了模型纤毛和相关的分子电动机动力学所展示的波形,用于铰接和夹紧边界条件。铰接的长丝表现出底尖振荡,而夹紧的长丝表现出底尖和尖端到基础振荡。我们报告了振荡频率和振幅的变化作为电动机活动和精子数的函数,我们讨论了纤毛行为的实验观察范围内这些结果的有效性。本文是Theo Murphy会议问题的一部分,在机动和运输中智利的慈善团结和多样性。

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