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A tubulin alpha 8 mouse knockout model indicates a likely role in spermatogenesis but not in brain development

Tubulin alpha 8 (Tuba8) is the most divergent member of the highly conserved alpha tubulin family, and uniquely lacks two key post-translational modification sites. It is abundantly expressed in testis and muscle, with lower levels in the brain. We previously identified homozygous hypomorphic TUBA8...

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Autores principales: Diggle, Christine P., Martinez-Garay, Isabel, Molnar, Zoltan, Brinkworth, Martin H., White, Ed, Fowler, Ewan, Hughes, Ruth, Hayward, Bruce E., Carr, Ian M., Watson, Christopher M., Crinnion, Laura, Asipu, Aruna, Woodman, Ben, Coletta, P. Louise, Markham, Alexander F., Dear, T. Neil, Bonthron, David T., Peckham, Michelle, Morrison, Ewan E., Sheridan, Eamonn
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5384676/
https://www.ncbi.nlm.nih.gov/pubmed/28388629
http://dx.doi.org/10.1371/journal.pone.0174264
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author Diggle, Christine P.
Martinez-Garay, Isabel
Molnar, Zoltan
Brinkworth, Martin H.
White, Ed
Fowler, Ewan
Hughes, Ruth
Hayward, Bruce E.
Carr, Ian M.
Watson, Christopher M.
Crinnion, Laura
Asipu, Aruna
Woodman, Ben
Coletta, P. Louise
Markham, Alexander F.
Dear, T. Neil
Bonthron, David T.
Peckham, Michelle
Morrison, Ewan E.
Sheridan, Eamonn
author_facet Diggle, Christine P.
Martinez-Garay, Isabel
Molnar, Zoltan
Brinkworth, Martin H.
White, Ed
Fowler, Ewan
Hughes, Ruth
Hayward, Bruce E.
Carr, Ian M.
Watson, Christopher M.
Crinnion, Laura
Asipu, Aruna
Woodman, Ben
Coletta, P. Louise
Markham, Alexander F.
Dear, T. Neil
Bonthron, David T.
Peckham, Michelle
Morrison, Ewan E.
Sheridan, Eamonn
author_sort Diggle, Christine P.
collection PubMed
description Tubulin alpha 8 (Tuba8) is the most divergent member of the highly conserved alpha tubulin family, and uniquely lacks two key post-translational modification sites. It is abundantly expressed in testis and muscle, with lower levels in the brain. We previously identified homozygous hypomorphic TUBA8 mutations in human subjects with a polymicrogyria (PMG) syndrome, suggesting its involvement in development of the cerebral cortex. We have now generated and characterized a Tuba8 knockout mouse model. Homozygous mice were confirmed to lack Tuba8 protein in the testis, but did not display PMG and appeared to be neurologically normal. In response to this finding, we re-analyzed the human PMG subjects using whole exome sequencing. This resulted in identification of an additional homozygous loss-of-function mutation in SNAP29, suggesting that SNAP29 deficiency, rather than TUBA8 deficiency, may underlie most or all of the neurodevelopmental anomalies in these subjects. Nonetheless, in the mouse brain, Tuba8 specifically localised to the cerebellar Purkinje cells, suggesting that the human mutations may affect or modify motor control. In the testis, Tuba8 localisation was cell-type specific. It was restricted to spermiogenesis with a strong acrosomal localization that was gradually replaced by cytoplasmic distribution and was absent from spermatozoa. Although the knockout mice were fertile, the localisation pattern indicated that Tuba8 may have a role in spermatid development during spermatogenesis, rather than as a component of the mature microtubule-rich flagellum itself.
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spelling pubmed-53846762017-05-03 A tubulin alpha 8 mouse knockout model indicates a likely role in spermatogenesis but not in brain development Diggle, Christine P. Martinez-Garay, Isabel Molnar, Zoltan Brinkworth, Martin H. White, Ed Fowler, Ewan Hughes, Ruth Hayward, Bruce E. Carr, Ian M. Watson, Christopher M. Crinnion, Laura Asipu, Aruna Woodman, Ben Coletta, P. Louise Markham, Alexander F. Dear, T. Neil Bonthron, David T. Peckham, Michelle Morrison, Ewan E. Sheridan, Eamonn PLoS One Research Article Tubulin alpha 8 (Tuba8) is the most divergent member of the highly conserved alpha tubulin family, and uniquely lacks two key post-translational modification sites. It is abundantly expressed in testis and muscle, with lower levels in the brain. We previously identified homozygous hypomorphic TUBA8 mutations in human subjects with a polymicrogyria (PMG) syndrome, suggesting its involvement in development of the cerebral cortex. We have now generated and characterized a Tuba8 knockout mouse model. Homozygous mice were confirmed to lack Tuba8 protein in the testis, but did not display PMG and appeared to be neurologically normal. In response to this finding, we re-analyzed the human PMG subjects using whole exome sequencing. This resulted in identification of an additional homozygous loss-of-function mutation in SNAP29, suggesting that SNAP29 deficiency, rather than TUBA8 deficiency, may underlie most or all of the neurodevelopmental anomalies in these subjects. Nonetheless, in the mouse brain, Tuba8 specifically localised to the cerebellar Purkinje cells, suggesting that the human mutations may affect or modify motor control. In the testis, Tuba8 localisation was cell-type specific. It was restricted to spermiogenesis with a strong acrosomal localization that was gradually replaced by cytoplasmic distribution and was absent from spermatozoa. Although the knockout mice were fertile, the localisation pattern indicated that Tuba8 may have a role in spermatid development during spermatogenesis, rather than as a component of the mature microtubule-rich flagellum itself. Public Library of Science 2017-04-07 /pmc/articles/PMC5384676/ /pubmed/28388629 http://dx.doi.org/10.1371/journal.pone.0174264 Text en © 2017 Diggle et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Diggle, Christine P.
Martinez-Garay, Isabel
Molnar, Zoltan
Brinkworth, Martin H.
White, Ed
Fowler, Ewan
Hughes, Ruth
Hayward, Bruce E.
Carr, Ian M.
Watson, Christopher M.
Crinnion, Laura
Asipu, Aruna
Woodman, Ben
Coletta, P. Louise
Markham, Alexander F.
Dear, T. Neil
Bonthron, David T.
Peckham, Michelle
Morrison, Ewan E.
Sheridan, Eamonn
A tubulin alpha 8 mouse knockout model indicates a likely role in spermatogenesis but not in brain development
title A tubulin alpha 8 mouse knockout model indicates a likely role in spermatogenesis but not in brain development
title_full A tubulin alpha 8 mouse knockout model indicates a likely role in spermatogenesis but not in brain development
title_fullStr A tubulin alpha 8 mouse knockout model indicates a likely role in spermatogenesis but not in brain development
title_full_unstemmed A tubulin alpha 8 mouse knockout model indicates a likely role in spermatogenesis but not in brain development
title_short A tubulin alpha 8 mouse knockout model indicates a likely role in spermatogenesis but not in brain development
title_sort tubulin alpha 8 mouse knockout model indicates a likely role in spermatogenesis but not in brain development
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5384676/
https://www.ncbi.nlm.nih.gov/pubmed/28388629
http://dx.doi.org/10.1371/journal.pone.0174264
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