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Cochlear outer hair cells undergo an apical circumference remodeling constrained by the hair bundle shape.

机译:耳蜗外毛细胞会受到发束形状的约束而发生顶端周围的重塑。

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Epithelial cells acquire diverse shapes relating to their different functions. This is particularly relevant for the cochlear outer hair cells (OHCs), whose apical and basolateral shapes accommodate the functioning of these cells as mechano-electrical and electromechanical transducers, respectively. We uncovered a circumferential shape transition of the apical junctional complex (AJC) of OHCs, which occurs during the early postnatal period in the mouse, prior to hearing onset. Geometric analysis of the OHC apical circumference using immunostaining of the AJC protein ZO1 and Fourier-interpolated contour detection characterizes this transition as a switch from a rounded-hexagon to a non-convex circumference delineating two lateral lobes at the neural side of the cell, with a negative curvature in between. This shape tightly correlates with the 'V'-configuration of the OHC hair bundle, the apical mechanosensitive organelle that converts sound-evoked vibrations into variations in cell membrane potential. The OHC apical circumference remodeling failed or was incomplete in all the mouse mutants affected in hair bundle morphogenesis that we tested. During the normal shape transition, myosin VIIa and myosin II (A and B isoforms) displayed polarized redistributions into and out of the developing lobes, respectively, while Shroom2 and F-actin transiently accumulated in the lobes. Defects in these redistributions were observed in the mutants, paralleling their apical circumference abnormalities. Our results point to a pivotal role for actomyosin cytoskeleton tensions in the reshaping of the OHC apical circumference. We propose that this remodeling contributes to optimize the mechanical coupling between the basal and apical poles of mature OHCs.
机译:上皮细胞具有与其不同功能有关的多种形状。这对于耳蜗外毛细胞(OHC)尤其重要,后者的顶端和基底外侧形状可容纳这些细胞分别作为机电转换器和机电转换器的功能。我们发现了OHC的根尖交界复合体(AJC)的周向形状过渡,该过渡发生在出生后的小鼠早期,听力发作之前。使用AJC蛋白ZO1的免疫染色和傅里叶插值轮廓检测对OHC顶周进行几何分析,将这种转变表征为从圆形六边形到非凸周长的切换,描绘了细胞神经侧的两个侧叶,两者之间的负曲率。这种形状与OHC发束的“ V”型结构紧密相关,OHC发束是根尖的机械敏感细胞器,可将声诱发的振动转换为细胞膜电位的变化。在我们测试的发束形态发生影响的所有小鼠突变体中,OHC根尖周重塑均失败或不完全。在正常的形状过渡过程中,肌球蛋白VIIa和肌球蛋白II(A和B同种型)分别显示了极化的重新分布,分别进入和离开了发育中的叶,而Shroom2和F-肌动蛋白短暂地积聚在叶中。在突变体中观察到这些重新分布的缺陷,与它们的顶端周围异常平行。我们的研究结果表明,肌动球蛋白细胞骨架张力在OHC根尖周长的重塑中起着关键作用。我们建议这种重塑有助于优化成熟OHC的基极和根尖之间的机械耦合。

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