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Mutations of MAP1B encoding a microtubule-associated phosphoprotein cause sensorineural hearing loss

The pathophysiology underlying spiral ganglion cell defect–induced deafness remains elusive. Using the whole exome sequencing approach, in combination with functional assays and a mouse disease model, we identified the potentially novel deafness-causative MAP1B gene encoding a highly conserved micro...

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Autores principales: Cui, Limei, Zheng, Jing, Zhao, Qiong, Chen, Jia-Rong, Liu, Hanqing, Peng, Guanghua, Wu, Yue, Chen, Chao, He, Qiufen, Shi, Haosong, Yin, Shankai, Friedman, Rick A., Chen, Ye, Guan, Min-Xin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Clinical Investigation 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7714412/
https://www.ncbi.nlm.nih.gov/pubmed/33268592
http://dx.doi.org/10.1172/jci.insight.136046
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author Cui, Limei
Zheng, Jing
Zhao, Qiong
Chen, Jia-Rong
Liu, Hanqing
Peng, Guanghua
Wu, Yue
Chen, Chao
He, Qiufen
Shi, Haosong
Yin, Shankai
Friedman, Rick A.
Chen, Ye
Guan, Min-Xin
author_facet Cui, Limei
Zheng, Jing
Zhao, Qiong
Chen, Jia-Rong
Liu, Hanqing
Peng, Guanghua
Wu, Yue
Chen, Chao
He, Qiufen
Shi, Haosong
Yin, Shankai
Friedman, Rick A.
Chen, Ye
Guan, Min-Xin
author_sort Cui, Limei
collection PubMed
description The pathophysiology underlying spiral ganglion cell defect–induced deafness remains elusive. Using the whole exome sequencing approach, in combination with functional assays and a mouse disease model, we identified the potentially novel deafness-causative MAP1B gene encoding a highly conserved microtubule-associated protein. Three novel heterozygous MAP1B mutations (c.4198A>G, p.1400S>G; c.2768T>C, p.923I>T; c.5512T>C, p.1838F>L) were cosegregated with autosomal dominant inheritance of nonsyndromic sensorineural hearing loss in 3 unrelated Chinese families. Here, we show that MAP1B is highly expressed in the spiral ganglion neurons in the mouse cochlea. Using otic sensory neuron–like cells, generated by pluripotent stem cells from patients carrying the MAP1B mutation and control subject, we demonstrated that the p.1400S>G mutation caused the reduced levels and deficient phosphorylation of MAP1B, which are involved in the microtubule stability and dynamics. Strikingly, otic sensory neuron–like cells exhibited disturbed dynamics of microtubules, axonal elongation, and defects in electrophysiological properties. Dysfunctions of these derived otic sensory neuron–like cells were rescued by genetically correcting MAP1B mutation using CRISPR/Cas9 technology. Involvement of MAP1B in hearing was confirmed by audiometric evaluation of Map1b heterozygous KO mice. These mutant mice displayed late-onset progressive sensorineural hearing loss that was more pronounced in the high frequencies. The spiral ganglion neurons isolated from Map1b mutant mice exhibited the deficient phosphorylation and disturbed dynamics of microtubules. Map1b deficiency yielded defects in the morphology and electrophysiology of spiral ganglion neurons, but it did not affect the morphologies of cochlea in mice. Therefore, our data demonstrate that dysfunctions of spiral ganglion neurons induced by MAP1B deficiency caused hearing loss.
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spelling pubmed-77144122020-12-08 Mutations of MAP1B encoding a microtubule-associated phosphoprotein cause sensorineural hearing loss Cui, Limei Zheng, Jing Zhao, Qiong Chen, Jia-Rong Liu, Hanqing Peng, Guanghua Wu, Yue Chen, Chao He, Qiufen Shi, Haosong Yin, Shankai Friedman, Rick A. Chen, Ye Guan, Min-Xin JCI Insight Research Article The pathophysiology underlying spiral ganglion cell defect–induced deafness remains elusive. Using the whole exome sequencing approach, in combination with functional assays and a mouse disease model, we identified the potentially novel deafness-causative MAP1B gene encoding a highly conserved microtubule-associated protein. Three novel heterozygous MAP1B mutations (c.4198A>G, p.1400S>G; c.2768T>C, p.923I>T; c.5512T>C, p.1838F>L) were cosegregated with autosomal dominant inheritance of nonsyndromic sensorineural hearing loss in 3 unrelated Chinese families. Here, we show that MAP1B is highly expressed in the spiral ganglion neurons in the mouse cochlea. Using otic sensory neuron–like cells, generated by pluripotent stem cells from patients carrying the MAP1B mutation and control subject, we demonstrated that the p.1400S>G mutation caused the reduced levels and deficient phosphorylation of MAP1B, which are involved in the microtubule stability and dynamics. Strikingly, otic sensory neuron–like cells exhibited disturbed dynamics of microtubules, axonal elongation, and defects in electrophysiological properties. Dysfunctions of these derived otic sensory neuron–like cells were rescued by genetically correcting MAP1B mutation using CRISPR/Cas9 technology. Involvement of MAP1B in hearing was confirmed by audiometric evaluation of Map1b heterozygous KO mice. These mutant mice displayed late-onset progressive sensorineural hearing loss that was more pronounced in the high frequencies. The spiral ganglion neurons isolated from Map1b mutant mice exhibited the deficient phosphorylation and disturbed dynamics of microtubules. Map1b deficiency yielded defects in the morphology and electrophysiology of spiral ganglion neurons, but it did not affect the morphologies of cochlea in mice. Therefore, our data demonstrate that dysfunctions of spiral ganglion neurons induced by MAP1B deficiency caused hearing loss. American Society for Clinical Investigation 2020-12-03 /pmc/articles/PMC7714412/ /pubmed/33268592 http://dx.doi.org/10.1172/jci.insight.136046 Text en © 2020 Cui et al. http://creativecommons.org/licenses/by/4.0/ This work is licensed under the Creative Commons Attribution 4.0 International License. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/.
spellingShingle Research Article
Cui, Limei
Zheng, Jing
Zhao, Qiong
Chen, Jia-Rong
Liu, Hanqing
Peng, Guanghua
Wu, Yue
Chen, Chao
He, Qiufen
Shi, Haosong
Yin, Shankai
Friedman, Rick A.
Chen, Ye
Guan, Min-Xin
Mutations of MAP1B encoding a microtubule-associated phosphoprotein cause sensorineural hearing loss
title Mutations of MAP1B encoding a microtubule-associated phosphoprotein cause sensorineural hearing loss
title_full Mutations of MAP1B encoding a microtubule-associated phosphoprotein cause sensorineural hearing loss
title_fullStr Mutations of MAP1B encoding a microtubule-associated phosphoprotein cause sensorineural hearing loss
title_full_unstemmed Mutations of MAP1B encoding a microtubule-associated phosphoprotein cause sensorineural hearing loss
title_short Mutations of MAP1B encoding a microtubule-associated phosphoprotein cause sensorineural hearing loss
title_sort mutations of map1b encoding a microtubule-associated phosphoprotein cause sensorineural hearing loss
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7714412/
https://www.ncbi.nlm.nih.gov/pubmed/33268592
http://dx.doi.org/10.1172/jci.insight.136046
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