生物
斑马鱼
耳泡
内耳
感音神经性聋
遗传学
细胞生物学
听力损失
基因
耳蜗
克里斯塔
损失函数
突变体
毛细胞
原位杂交
解剖
基因表达
线粒体
表型
听力学
医学
作者
Menghao Cheng,Xingyue Li,Huimin Cui,Haojie Sun,Tianshuo Deng,Xinying Song,Rui Song,Tong Wang,Zongkuan Wang,Haiyan Wang,Xiue Wang
标识
DOI:10.1016/j.jgg.2022.06.005
摘要
Damages of sensory hair cells (HCs) are mainly responsible for sensorineural hearing loss, while the pathological mechanism remains not fully understood due to the many potential deafness genes unidentified. ftr82, a member of the largely TRIMs family in fish, has been found specifically expressed in the otic vesicle while its function is still unclear. Here, we investigate the roles of ftr82 in HC development and hearing function utilizing the zebrafish model. The results of in situ hybridization illustrate that ftr82 is always restricted to localize in otic vesicles at different stages. The defects of HCs are observed both in ftr82 morphants and mutants, including significantly decreased crista HCs, shortened cilia as well as remarkably reduced functional HCs in neuromasts, which could be successfully rescued by co-injection of exogenous ftr82 mRNA. The behavior assay of startle response indicates that larvae lacking of ftr82 exhibits lower sensitivity to external sound stimuli. Further research reveals that the loss of HCs is mainly caused by cell apoptosis mediated by caspase-3 activation. Our study demonstrates that ftr82 is a crucial hearing-related gene that regulates the HC morphogenesis and auditory function performing, which provides new insight into the rapid identification of the deafness gene.
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