立体纤毛(内耳)
内耳
基因亚型
细胞生物学
生物
肌动蛋白
耳蜗
肌动蛋白细胞骨架
细胞骨架
解剖
毛细胞
遗传学
基因
细胞
作者
Tatsuya Katsuno,Inna A. Belyantseva,Alexander X. Cartagena‐Rivera,Keisuke Ohta,Shawn M. Crump,Ronald S. Petralia,Kazuya Ono,Risa Tona,Ayesha Imtiaz,Atteeq U. Rehman,Hiroshi Kiyonari,Mari Kaneko,Yaxian Wang,Takaya Abe,Makoto Ikeya,Cristina Fenollar‐Ferrer,Gavin P. Riordan,Elisabeth A. Wilson,Tracy S. Fitzgerald,Kohei Segawa
出处
期刊:JCI insight
[American Society for Clinical Investigation]
日期:2019-06-19
卷期号:4 (12)
被引量:47
标识
DOI:10.1172/jci.insight.128561
摘要
TRIOBP remodels the cytoskeleton by forming unusually dense F-actin bundles and is implicated in human cancer, schizophrenia, and deafness. Mutations ablating human and mouse TRIOBP-4 and TRIOBP-5 isoforms are associated with profound deafness, as inner ear mechanosensory hair cells degenerate after stereocilia rootlets fail to develop. However, the mechanisms regulating formation of stereocilia rootlets by each TRIOBP isoform remain unknown. Using 3 new Triobp mouse models, we report that TRIOBP-5 is essential for thickening bundles of F-actin in rootlets, establishing their mature dimensions and for stiffening supporting cells of the auditory sensory epithelium. The coiled-coil domains of this isoform are required for reinforcement and maintenance of stereocilia rootlets. A loss of TRIOBP-5 in mouse results in dysmorphic rootlets that are abnormally thin in the cuticular plate but have increased widths and lengths within stereocilia cores, and causes progressive deafness recapitulating the human phenotype. Our study extends the current understanding of TRIOBP isoform-specific functions necessary for life-long hearing, with implications for insight into other TRIOBPopathies.
科研通智能强力驱动
Strongly Powered by AbleSci AI