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Auditory Hair Cell Centrioles Undergo Confined Brownian Motion Throughout the Developmental Migration of the Kinocilium

机译:听觉毛细胞中心在整个动囊发育迁移过程中受到局限的布朗运动。

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摘要

Planar polarization of the forming hair bundle, the mechanosensory antenna of auditory hair cells, depends on the poorly characterized center-to-edge displacement of a primary cilium, the kinocilium, at their apical surface. Taking advantage of the gradient of hair cell differentiation along the cochlea, we reconstituted a map of the kinocilia displacements in the mouse embryonic cochlea. We then developed a cochlear organotypic culture and video-microscopy approach to monitor the movements of the kinocilium basal body (mother centriole) and its daughter centriole, which we analyzed using particle tracking and modeling. We found that both hair cell centrioles undergo confined Brownian movements around their equilibrium positions, under the apparent constraint of a radial restoring force of ∼0.1 pN. This magnitude depended little on centriole position, suggesting nonlinear interactions with constraining, presumably cytoskeletal elements. The only dynamic change observed during the period of kinocilium migration was a doubling of the centrioles’ confinement area taking place early in the process. It emerges from these static and dynamic observations that kinocilia migrate gradually in parallel with the organization of hair cells into rows during cochlear neuroepithelium extension. Analysis of the confined motion of hair cell centrioles under normal and pathological conditions should help determine which structures contribute to the restoring force exerting on them.
机译:形成的发束的平面极化,即听觉毛细胞的机械感触天线,取决于初级纤毛,运动毛细血管在其顶端表面的特征不佳的中心到边缘位移。利用沿耳蜗的毛细胞分化的梯度,我们重建了小鼠胚胎耳蜗中的运动分布。然后,我们开发了耳蜗器官型培养和视频显微镜方法,以监测运动毛虫基体(母中心粒)及其子中心粒的运动,我们使用粒子跟踪和建模对其进行了分析。我们发现两个毛细胞中心在其平衡位置周围都受到局限的布朗运动,这是在径向回复力约为0.1 pN的明显约束下进行的。此大小几乎不依赖于中心粒的位置,表明与受约束的大概是细胞骨架元素的非线性相互作用。在动毛虫迁移期间观察到的唯一动态变化是在此过程早期发生的中心粒限制区的翻倍。从这些静态和动态的观察结果来看,在耳蜗神经上皮伸展过程中,运动性毛细血管逐渐与毛细胞的组织平行迁移成排。在正常和病理条件下对毛细胞中心细胞的局限性运动进行分析,应有助于确定哪些结构有助于施加在其上的恢复力。

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