Shandong Provincial Key Laboratory of Animal Cells and Developmental Biology and Key Laboratory for Experimental Teratology of the Ministry of Education, School of Life Sciences, Shandong University, Qingdao, Shandong, China.
Shandong Provincial Collaborative Innovation Center of Cell Biology, Shandong Normal University, Jinan, Shandong, China.
J Cell Physiol. 2023 May;238(5):1095-1110. doi: 10.1002/jcp.31003. Epub 2023 Mar 22.
As the sensory receptor cells in vertebrate inner ear and lateral lines, hair cells are characterized by the hair bundle that consists of one tubulin-based kinocilium and dozens of actin-based stereocilia on the apical surface of each hair cell. Hair cell development is tightly regulated, and deficits in this process usually lead to hearing loss and/or balance dysfunctions. RNA-binding motif protein 24 (RBM24) is an RNA-binding protein that is specifically expressed in the hair cells in the inner ear. Previously, we showed that RBM24 affects hair cell development in zebrafish by regulating messenger RNA (mRNA) stability. In the present work, we further investigate the role of RBM24 in hearing and balance using conditional knockout mice. Our results show that Rbm24 knockout results in severe hearing and balance deficits. Hair cell development is significantly affected in Rbm24 knockout cochlea, as the hair bundles are poorly developed and eventually degenerated. Hair bundle disorganization is also observed in Rbm24 knockout vestibular hair cells, although to a lesser extent. Consistently, significant hair cell loss is observed in the cochlea but not vestibule. RNAseq analysis identified several genes whose mRNA stability or pre-mRNA alternative splicing is affected by Rbm24 knockout. Among them are Cdh23, Pcdh15, and Myo7a, which have been shown to play important roles in stereocilia development as well as mechano-electrical transduction. Taken together, our present work suggests that RBM24 is required for mouse hair cell development through regulating pre-mRNA alternative splicing as well as mRNA stability.
作为脊椎动物内耳和侧线的感觉受体细胞,毛细胞的特征是毛束,它由一个基于微管的动纤毛和每个毛细胞顶表面的数十个基于肌动蛋白的静纤毛组成。毛细胞的发育受到严格的调控,该过程的缺陷通常导致听力损失和/或平衡功能障碍。RNA 结合基序蛋白 24(RBM24)是一种在内耳毛细胞中特异性表达的 RNA 结合蛋白。以前,我们发现 RBM24 通过调节信使 RNA(mRNA)稳定性来影响斑马鱼的毛细胞发育。在本工作中,我们使用条件性敲除小鼠进一步研究了 RBM24 在听力和平衡中的作用。结果表明,Rbm24 敲除导致严重的听力和平衡缺陷。Rbm24 敲除耳蜗中的毛细胞发育受到显著影响,毛束发育不良,最终退化。在 Rbm24 敲除前庭毛细胞中也观察到毛束紊乱,但程度较轻。一致地,在耳蜗中观察到显著的毛细胞丢失,但在前庭中没有。RNAseq 分析确定了几个基因的 mRNA 稳定性或前体 mRNA 选择性剪接受到 Rbm24 敲除的影响。其中包括 Cdh23、Pcdh15 和 Myo7a,它们已被证明在静纤毛发育和机械电转导中发挥重要作用。总之,我们的工作表明,RBM24 通过调节前体 mRNA 选择性剪接和 mRNA 稳定性来促进小鼠毛细胞的发育。