论文标题

通过曲率调节轴突调节说明精子鞭毛波形调制

Axonemal regulation by curvature explains sperm flagellar waveform modulation

论文作者

Gallagher, Meurig T, Kirkman-Brown, Jackson C, Smith, David J

论文摘要

鞭毛运动对自然和多种形式的辅助生殖至关重要。鞭毛的节奏跳动和波动传播通过流体推动精子,并在穿透性渐进运动,激活的侧面偏航和与上皮结合的脱离有关的运动中进行调节。这些运动性变化是响应周围流体环境,生化激活状态和生理配体的特性而发生的,但是缺乏可以解释运动调节的鞭毛节拍产生的简约机械解释。在本文中,我们介绍了曲率滞后模型(ARC)的轴突调节,这是一种曲率控制型理论,基于通过局部曲率切换活性力矩的曲率控制型理论,并嵌入了鞭毛的鞭毛非线性弹性模型中,表现出平面鞭毛节拍,以及非局部粘性磁盘流体动力学。生物物理系统通过四个无量纲参数组完全参数化。参数变化的效果通过计算模拟探索,揭示了质量代表穿透性(直渐进),激活(高度偏缩)和过度激活(非促进)模式的节拍模式。鞭毛极限循环和相关的游泳速度的Anaylsis揭示了渐进式和非促进模式之间的尖峰灾难,以及对临界曲率参数变化的响应的滞后。与表现出典型的穿透性,激活和过度活化的节拍的人类精子的实验数据的定量比较表明,沿鞭毛沿着时间平均的绝对曲率曲线非常适合,提供了证据,表明该模型能够为成像数据提供定量解释的框架。

Flagellar motility is critical to natural and many forms of assisted reproduction. Rhythmic beating and wave propagation by the flagellum propels sperm through fluid and enables modulation between penetrative progressive motion, activated side-to-side yaw and hyperactivated motility associated with detachment from epithelial binding. These motility changes occur in response to the properties of the surrounding fluid environment, biochemical activation state, and physiological ligands, however a parsimonious mechanistic explanation of flagellar beat generation that can explain motility modulation is lacking. In this paper we present the Axonemal Regulation of Curvature, Hysteretic model (ARCH), a curvature control-type theory based on switching of active moment by local curvature, embedded within a geometrically nonlinear elastic model of the flagellum exhibiting planar flagellar beats, together with nonlocal viscous fluid dynamics. The biophysical system is parameterised completely by four dimensionless parameter groupings. The effect of parameter variation is explored through computational simulation, revealing beat patterns that are qualitatively representative of penetrative (straight progressive), activated (highly yawing) and hyperactivated (non-progressive) modes. Anaylsis of the flagellar limit cycles and associated swimming velocity reveals a cusp catastrophe between progressive and non-progressive modes, and hysteresis in the response to changes in critical curvature parameter. Quantitative comparison to experimental data on human sperm exhibiting typical penetrative, activated and hyperactivated beats shows a good fit to the time-average absolute curvature profile along the flagellum, providing evidence that the model is capable of providing a framework for quantitative interpretation of imaging data.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源