Mouse screen reveals multiple new genes underlying mouse and human hearing loss.
Adult-onset hearing loss is very common, but we know little about the underlying molecular pathogenesis impeding the development of therapies. We took a genetic approach to identify new molecules involved in hearing loss by screening a large cohort of newly generated mouse mutants using a sensitive...
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2019-04-01
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Online Access: | https://doi.org/10.1371/journal.pbio.3000194 |
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doaj-d4fe6f45bed545a7b63c0342d4aa004a2021-07-02T21:38:10ZengPublic Library of Science (PLoS)PLoS Biology1544-91731545-78852019-04-01174e300019410.1371/journal.pbio.3000194Mouse screen reveals multiple new genes underlying mouse and human hearing loss.Neil J InghamSelina A PearsonValerie E VancollieVictoria RookMorag A LewisJing ChenAnnalisa BunielloElisa MartellettiLorenzo PreiteChi Chung LamFelix D WeissZӧe PowisPim SuwannaratChristopher J LelliottSally J DawsonJacqueline K WhiteKaren P SteelAdult-onset hearing loss is very common, but we know little about the underlying molecular pathogenesis impeding the development of therapies. We took a genetic approach to identify new molecules involved in hearing loss by screening a large cohort of newly generated mouse mutants using a sensitive electrophysiological test, the auditory brainstem response (ABR). We review here the findings from this screen. Thirty-eight unexpected genes associated with raised thresholds were detected from our unbiased sample of 1,211 genes tested, suggesting extreme genetic heterogeneity. A wide range of auditory pathophysiologies was found, and some mutant lines showed normal development followed by deterioration of responses, revealing new molecular pathways involved in progressive hearing loss. Several of the genes were associated with the range of hearing thresholds in the human population and one, SPNS2, was involved in childhood deafness. The new pathways required for maintenance of hearing discovered by this screen present new therapeutic opportunities.https://doi.org/10.1371/journal.pbio.3000194 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Neil J Ingham Selina A Pearson Valerie E Vancollie Victoria Rook Morag A Lewis Jing Chen Annalisa Buniello Elisa Martelletti Lorenzo Preite Chi Chung Lam Felix D Weiss Zӧe Powis Pim Suwannarat Christopher J Lelliott Sally J Dawson Jacqueline K White Karen P Steel |
spellingShingle |
Neil J Ingham Selina A Pearson Valerie E Vancollie Victoria Rook Morag A Lewis Jing Chen Annalisa Buniello Elisa Martelletti Lorenzo Preite Chi Chung Lam Felix D Weiss Zӧe Powis Pim Suwannarat Christopher J Lelliott Sally J Dawson Jacqueline K White Karen P Steel Mouse screen reveals multiple new genes underlying mouse and human hearing loss. PLoS Biology |
author_facet |
Neil J Ingham Selina A Pearson Valerie E Vancollie Victoria Rook Morag A Lewis Jing Chen Annalisa Buniello Elisa Martelletti Lorenzo Preite Chi Chung Lam Felix D Weiss Zӧe Powis Pim Suwannarat Christopher J Lelliott Sally J Dawson Jacqueline K White Karen P Steel |
author_sort |
Neil J Ingham |
title |
Mouse screen reveals multiple new genes underlying mouse and human hearing loss. |
title_short |
Mouse screen reveals multiple new genes underlying mouse and human hearing loss. |
title_full |
Mouse screen reveals multiple new genes underlying mouse and human hearing loss. |
title_fullStr |
Mouse screen reveals multiple new genes underlying mouse and human hearing loss. |
title_full_unstemmed |
Mouse screen reveals multiple new genes underlying mouse and human hearing loss. |
title_sort |
mouse screen reveals multiple new genes underlying mouse and human hearing loss. |
publisher |
Public Library of Science (PLoS) |
series |
PLoS Biology |
issn |
1544-9173 1545-7885 |
publishDate |
2019-04-01 |
description |
Adult-onset hearing loss is very common, but we know little about the underlying molecular pathogenesis impeding the development of therapies. We took a genetic approach to identify new molecules involved in hearing loss by screening a large cohort of newly generated mouse mutants using a sensitive electrophysiological test, the auditory brainstem response (ABR). We review here the findings from this screen. Thirty-eight unexpected genes associated with raised thresholds were detected from our unbiased sample of 1,211 genes tested, suggesting extreme genetic heterogeneity. A wide range of auditory pathophysiologies was found, and some mutant lines showed normal development followed by deterioration of responses, revealing new molecular pathways involved in progressive hearing loss. Several of the genes were associated with the range of hearing thresholds in the human population and one, SPNS2, was involved in childhood deafness. The new pathways required for maintenance of hearing discovered by this screen present new therapeutic opportunities. |
url |
https://doi.org/10.1371/journal.pbio.3000194 |
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