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Deafness‐Associated ADGRV1 Mutation Impairs USH2A Stability through Improper Phosphorylation of WHRN and WDSUB1 Recruitment

The ankle‐link complex (ALC) consists of USH2A, WHRN, PDZD7, and ADGRV1 and plays an important role in hair cell development. At present, its architectural organization and signaling role remain unclear. By establishing Adgrv1 Y6236fsX1 mutant mice as a model of the deafness‐associated human Y6244fs...

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Autores principales: Guan, Ying, Du, Hai‐Bo, Yang, Zhao, Wang, Yu‐Zhu, Ren, Rui, Liu, Wen‐Wen, Zhang, Chao, Zhang, Jia‐Hai, An, Wen‐Tao, Li, Na‐Na, Zeng, Xiao‐Xue, Li, Jie, Sun, Yi‐Xiao, Wang, Yan‐Fei, Yang, Fan, Yang, Jun, Xiong, Wei, Yu, Xiao, Chai, Ren‐Jie, Tu, Xiao‐Ming, Sun, Jin‐Peng, Xu, Zhi‐Gang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10238197/
https://www.ncbi.nlm.nih.gov/pubmed/37066759
http://dx.doi.org/10.1002/advs.202205993
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author Guan, Ying
Du, Hai‐Bo
Yang, Zhao
Wang, Yu‐Zhu
Ren, Rui
Liu, Wen‐Wen
Zhang, Chao
Zhang, Jia‐Hai
An, Wen‐Tao
Li, Na‐Na
Zeng, Xiao‐Xue
Li, Jie
Sun, Yi‐Xiao
Wang, Yan‐Fei
Yang, Fan
Yang, Jun
Xiong, Wei
Yu, Xiao
Chai, Ren‐Jie
Tu, Xiao‐Ming
Sun, Jin‐Peng
Xu, Zhi‐Gang
author_facet Guan, Ying
Du, Hai‐Bo
Yang, Zhao
Wang, Yu‐Zhu
Ren, Rui
Liu, Wen‐Wen
Zhang, Chao
Zhang, Jia‐Hai
An, Wen‐Tao
Li, Na‐Na
Zeng, Xiao‐Xue
Li, Jie
Sun, Yi‐Xiao
Wang, Yan‐Fei
Yang, Fan
Yang, Jun
Xiong, Wei
Yu, Xiao
Chai, Ren‐Jie
Tu, Xiao‐Ming
Sun, Jin‐Peng
Xu, Zhi‐Gang
author_sort Guan, Ying
collection PubMed
description The ankle‐link complex (ALC) consists of USH2A, WHRN, PDZD7, and ADGRV1 and plays an important role in hair cell development. At present, its architectural organization and signaling role remain unclear. By establishing Adgrv1 Y6236fsX1 mutant mice as a model of the deafness‐associated human Y6244fsX1 mutation, the authors show here that the Y6236fsX1 mutation disrupts the interaction between adhesion G protein‐coupled receptor V subfamily member 1 (ADGRV1) and other ALC components, resulting in stereocilia disorganization and mechanoelectrical transduction (MET) deficits. Importantly, ADGRV1 inhibits WHRN phosphorylation through regional cAMP‐PKA signaling, which in turn regulates the ubiquitination and stability of USH2A via local signaling compartmentalization, whereas ADGRV1 Y6236fsX1 does not. Yeast two‐hybrid screening identified the E3 ligase WDSUB1 that binds to WHRN and regulates the ubiquitination of USH2A in a WHRN phosphorylation‐dependent manner. Further FlAsH‐BRET assay, NMR spectrometry, and mutagenesis analysis provided insights into the architectural organization of ALC and interaction motifs at single‐residue resolution. In conclusion, the present data suggest that ALC organization and accompanying local signal transduction play important roles in regulating the stability of the ALC.
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spelling pubmed-102381972023-06-04 Deafness‐Associated ADGRV1 Mutation Impairs USH2A Stability through Improper Phosphorylation of WHRN and WDSUB1 Recruitment Guan, Ying Du, Hai‐Bo Yang, Zhao Wang, Yu‐Zhu Ren, Rui Liu, Wen‐Wen Zhang, Chao Zhang, Jia‐Hai An, Wen‐Tao Li, Na‐Na Zeng, Xiao‐Xue Li, Jie Sun, Yi‐Xiao Wang, Yan‐Fei Yang, Fan Yang, Jun Xiong, Wei Yu, Xiao Chai, Ren‐Jie Tu, Xiao‐Ming Sun, Jin‐Peng Xu, Zhi‐Gang Adv Sci (Weinh) Research Articles The ankle‐link complex (ALC) consists of USH2A, WHRN, PDZD7, and ADGRV1 and plays an important role in hair cell development. At present, its architectural organization and signaling role remain unclear. By establishing Adgrv1 Y6236fsX1 mutant mice as a model of the deafness‐associated human Y6244fsX1 mutation, the authors show here that the Y6236fsX1 mutation disrupts the interaction between adhesion G protein‐coupled receptor V subfamily member 1 (ADGRV1) and other ALC components, resulting in stereocilia disorganization and mechanoelectrical transduction (MET) deficits. Importantly, ADGRV1 inhibits WHRN phosphorylation through regional cAMP‐PKA signaling, which in turn regulates the ubiquitination and stability of USH2A via local signaling compartmentalization, whereas ADGRV1 Y6236fsX1 does not. Yeast two‐hybrid screening identified the E3 ligase WDSUB1 that binds to WHRN and regulates the ubiquitination of USH2A in a WHRN phosphorylation‐dependent manner. Further FlAsH‐BRET assay, NMR spectrometry, and mutagenesis analysis provided insights into the architectural organization of ALC and interaction motifs at single‐residue resolution. In conclusion, the present data suggest that ALC organization and accompanying local signal transduction play important roles in regulating the stability of the ALC. John Wiley and Sons Inc. 2023-04-17 /pmc/articles/PMC10238197/ /pubmed/37066759 http://dx.doi.org/10.1002/advs.202205993 Text en © 2023 The Authors. Advanced Science published by Wiley‐VCH GmbH https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Guan, Ying
Du, Hai‐Bo
Yang, Zhao
Wang, Yu‐Zhu
Ren, Rui
Liu, Wen‐Wen
Zhang, Chao
Zhang, Jia‐Hai
An, Wen‐Tao
Li, Na‐Na
Zeng, Xiao‐Xue
Li, Jie
Sun, Yi‐Xiao
Wang, Yan‐Fei
Yang, Fan
Yang, Jun
Xiong, Wei
Yu, Xiao
Chai, Ren‐Jie
Tu, Xiao‐Ming
Sun, Jin‐Peng
Xu, Zhi‐Gang
Deafness‐Associated ADGRV1 Mutation Impairs USH2A Stability through Improper Phosphorylation of WHRN and WDSUB1 Recruitment
title Deafness‐Associated ADGRV1 Mutation Impairs USH2A Stability through Improper Phosphorylation of WHRN and WDSUB1 Recruitment
title_full Deafness‐Associated ADGRV1 Mutation Impairs USH2A Stability through Improper Phosphorylation of WHRN and WDSUB1 Recruitment
title_fullStr Deafness‐Associated ADGRV1 Mutation Impairs USH2A Stability through Improper Phosphorylation of WHRN and WDSUB1 Recruitment
title_full_unstemmed Deafness‐Associated ADGRV1 Mutation Impairs USH2A Stability through Improper Phosphorylation of WHRN and WDSUB1 Recruitment
title_short Deafness‐Associated ADGRV1 Mutation Impairs USH2A Stability through Improper Phosphorylation of WHRN and WDSUB1 Recruitment
title_sort deafness‐associated adgrv1 mutation impairs ush2a stability through improper phosphorylation of whrn and wdsub1 recruitment
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10238197/
https://www.ncbi.nlm.nih.gov/pubmed/37066759
http://dx.doi.org/10.1002/advs.202205993
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