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A subunit of V-ATPases, ATP6V1B2, underlies the pathology of intellectual disability

BACKGROUND: Dominant deafness-onychodystrophy (DDOD) syndrome is a rare disorder mainly characterized by severe deafness, onychodystrophy and brachydactyly. We previously identified c.1516C > T (p.Arg506X) in ATP6V1B2 as cause of DDOD syndrome, accounting for all cases of this genetic disorder. C...

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Autores principales: Zhao, Weihao, Gao, Xue, Qiu, Shiwei, Gao, Bo, Gao, Song, Zhang, Xin, Kang, Dongyang, Han, Weiju, Dai, Pu, Yuan, Yongyi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6642280/
https://www.ncbi.nlm.nih.gov/pubmed/31257146
http://dx.doi.org/10.1016/j.ebiom.2019.06.035
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author Zhao, Weihao
Gao, Xue
Qiu, Shiwei
Gao, Bo
Gao, Song
Zhang, Xin
Kang, Dongyang
Han, Weiju
Dai, Pu
Yuan, Yongyi
author_facet Zhao, Weihao
Gao, Xue
Qiu, Shiwei
Gao, Bo
Gao, Song
Zhang, Xin
Kang, Dongyang
Han, Weiju
Dai, Pu
Yuan, Yongyi
author_sort Zhao, Weihao
collection PubMed
description BACKGROUND: Dominant deafness-onychodystrophy (DDOD) syndrome is a rare disorder mainly characterized by severe deafness, onychodystrophy and brachydactyly. We previously identified c.1516C > T (p.Arg506X) in ATP6V1B2 as cause of DDOD syndrome, accounting for all cases of this genetic disorder. Clinical follow-up of DDOD syndrome patients with cochlear implantation revealed the language rehabilitation was unsatisfactory although the implanted cochlea worked well, which indicates there might be learning and memory problems in DDOD syndrome patients. However, the underlying mechanisms were unknown. METHODS: atp6v1b2 knockdown zebrafish and Atp6v1b2 c.1516C > T knockin mice were constructed to explore the phenotypes and related mechanism. In mutant mice, auditory brainstem response test and cochlear morphology analysis were performed to evaluate the auditory function. Behavioral tests were used to investigate various behavioral and cognitive domains. Resting-state functional magnetic resonance imaging was used to evaluate functional connectivity in the mouse brain. Immunofluorescence, Western blot, and co-immunoprecipitation were performed to examine the expression and interactions between the subunits of V-ATPases. FINDINGS: atp6v1b2 knockdown zebrafish showed developmental defects in multiple organs and systems. However, Atp6v1b2 c.1516C > T knockin mice displayed obvious cognitive defects but normal hearing and cochlear morphology. Impaired hippocampal CA1 region and weaker interaction between the V1E and B2 subunits in Atp6v1b2(Arg506X//Arg506X) mice were observed. INTERPRETATION: Our study extends the phenotypic range of DDOD syndrome. The impaired hippocampal CA1 region may be the pathological basis of the behavioral defects in mutant mice. The molecular mechanism underlying V-ATPases dysfunction involves a weak interaction between subunits, although the assembly of V-ATPases can still take place.
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spelling pubmed-66422802019-07-29 A subunit of V-ATPases, ATP6V1B2, underlies the pathology of intellectual disability Zhao, Weihao Gao, Xue Qiu, Shiwei Gao, Bo Gao, Song Zhang, Xin Kang, Dongyang Han, Weiju Dai, Pu Yuan, Yongyi EBioMedicine Research paper BACKGROUND: Dominant deafness-onychodystrophy (DDOD) syndrome is a rare disorder mainly characterized by severe deafness, onychodystrophy and brachydactyly. We previously identified c.1516C > T (p.Arg506X) in ATP6V1B2 as cause of DDOD syndrome, accounting for all cases of this genetic disorder. Clinical follow-up of DDOD syndrome patients with cochlear implantation revealed the language rehabilitation was unsatisfactory although the implanted cochlea worked well, which indicates there might be learning and memory problems in DDOD syndrome patients. However, the underlying mechanisms were unknown. METHODS: atp6v1b2 knockdown zebrafish and Atp6v1b2 c.1516C > T knockin mice were constructed to explore the phenotypes and related mechanism. In mutant mice, auditory brainstem response test and cochlear morphology analysis were performed to evaluate the auditory function. Behavioral tests were used to investigate various behavioral and cognitive domains. Resting-state functional magnetic resonance imaging was used to evaluate functional connectivity in the mouse brain. Immunofluorescence, Western blot, and co-immunoprecipitation were performed to examine the expression and interactions between the subunits of V-ATPases. FINDINGS: atp6v1b2 knockdown zebrafish showed developmental defects in multiple organs and systems. However, Atp6v1b2 c.1516C > T knockin mice displayed obvious cognitive defects but normal hearing and cochlear morphology. Impaired hippocampal CA1 region and weaker interaction between the V1E and B2 subunits in Atp6v1b2(Arg506X//Arg506X) mice were observed. INTERPRETATION: Our study extends the phenotypic range of DDOD syndrome. The impaired hippocampal CA1 region may be the pathological basis of the behavioral defects in mutant mice. The molecular mechanism underlying V-ATPases dysfunction involves a weak interaction between subunits, although the assembly of V-ATPases can still take place. Elsevier 2019-06-27 /pmc/articles/PMC6642280/ /pubmed/31257146 http://dx.doi.org/10.1016/j.ebiom.2019.06.035 Text en © 2019 Published by Elsevier B.V. http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research paper
Zhao, Weihao
Gao, Xue
Qiu, Shiwei
Gao, Bo
Gao, Song
Zhang, Xin
Kang, Dongyang
Han, Weiju
Dai, Pu
Yuan, Yongyi
A subunit of V-ATPases, ATP6V1B2, underlies the pathology of intellectual disability
title A subunit of V-ATPases, ATP6V1B2, underlies the pathology of intellectual disability
title_full A subunit of V-ATPases, ATP6V1B2, underlies the pathology of intellectual disability
title_fullStr A subunit of V-ATPases, ATP6V1B2, underlies the pathology of intellectual disability
title_full_unstemmed A subunit of V-ATPases, ATP6V1B2, underlies the pathology of intellectual disability
title_short A subunit of V-ATPases, ATP6V1B2, underlies the pathology of intellectual disability
title_sort subunit of v-atpases, atp6v1b2, underlies the pathology of intellectual disability
topic Research paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6642280/
https://www.ncbi.nlm.nih.gov/pubmed/31257146
http://dx.doi.org/10.1016/j.ebiom.2019.06.035
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