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前庭动纤毛的双重分子特性:连接初级纤毛和运动纤毛的结构与功能特征

The Dual Molecular Identity of Vestibular Kinocilia: Bridging Structural and Functional Traits of Primary and Motile Cilia.

作者信息

Xu Zhenhang, Tavakoli Amirrasoul, Kulasooriya Samadhi, Liu Huizhan, Tu Shu, Bloom Celia, Li Yi, Johnson Tirone D, Zuo Jian, Tao Litao, Kachar Bechara, He David Z

出版信息

bioRxiv. 2025 Jun 23:2025.04.16.647417. doi: 10.1101/2025.04.16.647417.

Abstract

Vestibular hair cells (HCs) convert gravitational and head motion cues into neural signals through mechanotransduction, mediated by the hair bundle-a mechanically integrated organelle composed of stereocilia and a kinocilium. The kinocilium, a specialized form of primary cilium, remains incompletely defined in structure, molecular composition, and function. To elucidate its characteristics, we conducted single-cell RNA sequencing of adult vestibular and cochlear HCs, uncovering a selective enrichment of primary and motile cilia-associated genes in vestibular HCs, particularly those related to the axonemal repeat complex. This enrichment of orthologous axonemal-related genes was conserved in zebrafish and human vestibular HCs, indicating a shared molecular architecture. Immunostaining validated the expression of key motile cilia markers in vestibular kinocilia. Moreover, live imaging of bullfrog and mouse HCs from crista ampullaris revealed spontaneous kinociliary motion. Together, these findings define the kinocilium as a unique organelle with molecular features of primary and motile cilia and support its previously unknown role as an active, force-generating element within the hair bundle.

摘要

前庭毛细胞(HCs)通过机械转导将重力和头部运动线索转化为神经信号,这一过程由毛束介导,毛束是一种由静纤毛和动纤毛组成的机械整合细胞器。动纤毛是初级纤毛的一种特殊形式,其结构、分子组成和功能仍未完全明确。为了阐明其特征,我们对成年前庭和耳蜗毛细胞进行了单细胞RNA测序,发现前庭毛细胞中初级纤毛和运动纤毛相关基因有选择性富集,特别是那些与轴丝重复复合体相关的基因。这种直系同源轴丝相关基因的富集在斑马鱼和人类前庭毛细胞中是保守的,表明存在共同的分子结构。免疫染色验证了前庭动纤毛中关键运动纤毛标记物的表达。此外,对牛蛙和小鼠壶腹嵴毛细胞的实时成像显示了动纤毛的自发运动。这些发现共同将动纤毛定义为一种具有初级纤毛和运动纤毛分子特征的独特细胞器,并支持其在毛束中作为一个活跃的、产生力的元件的先前未知作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a187/12190475/edb6497e59a8/nihpp-2025.04.16.647417v3-f0001.jpg

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