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Translational outcomes in a full gene deletion of ubiquitin protein ligase E3A rat model of Angelman syndrome

Angelman syndrome (AS) is a rare neurodevelopmental disorder characterized by developmental delay, impaired communication, motor deficits and ataxia, intellectual disabilities, microcephaly, and seizures. The genetic cause of AS is the loss of expression of UBE3A (ubiquitin protein ligase E6-AP) in...

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Autores principales: Berg, E. L., Pride, M. C., Petkova, S. P., Lee, R. D., Copping, N. A., Shen, Y., Adhikari, A., Fenton, T. A., Pedersen, L. R., Noakes, L. S., Nieman, B. J., Lerch, J. P., Harris, S., Born, H. A., Peters, M. M., Deng, P., Cameron, D. L., Fink, K. D., Beitnere, U., O’Geen, H., Anderson, A. E., Dindot, S. V., Nash, K. R., Weeber, E. J., Wöhr, M., Ellegood, J., Segal, D. J., Silverman, J. L.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7026078/
https://www.ncbi.nlm.nih.gov/pubmed/32066685
http://dx.doi.org/10.1038/s41398-020-0720-2
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author Berg, E. L.
Pride, M. C.
Petkova, S. P.
Lee, R. D.
Copping, N. A.
Shen, Y.
Adhikari, A.
Fenton, T. A.
Pedersen, L. R.
Noakes, L. S.
Nieman, B. J.
Lerch, J. P.
Harris, S.
Born, H. A.
Peters, M. M.
Deng, P.
Cameron, D. L.
Fink, K. D.
Beitnere, U.
O’Geen, H.
Anderson, A. E.
Dindot, S. V.
Nash, K. R.
Weeber, E. J.
Wöhr, M.
Ellegood, J.
Segal, D. J.
Silverman, J. L.
author_facet Berg, E. L.
Pride, M. C.
Petkova, S. P.
Lee, R. D.
Copping, N. A.
Shen, Y.
Adhikari, A.
Fenton, T. A.
Pedersen, L. R.
Noakes, L. S.
Nieman, B. J.
Lerch, J. P.
Harris, S.
Born, H. A.
Peters, M. M.
Deng, P.
Cameron, D. L.
Fink, K. D.
Beitnere, U.
O’Geen, H.
Anderson, A. E.
Dindot, S. V.
Nash, K. R.
Weeber, E. J.
Wöhr, M.
Ellegood, J.
Segal, D. J.
Silverman, J. L.
author_sort Berg, E. L.
collection PubMed
description Angelman syndrome (AS) is a rare neurodevelopmental disorder characterized by developmental delay, impaired communication, motor deficits and ataxia, intellectual disabilities, microcephaly, and seizures. The genetic cause of AS is the loss of expression of UBE3A (ubiquitin protein ligase E6-AP) in the brain, typically due to a deletion of the maternal 15q11-q13 region. Previous studies have been performed using a mouse model with a deletion of a single exon of Ube3a. Since three splice variants of Ube3a exist, this has led to a lack of consistent reports and the theory that perhaps not all mouse studies were assessing the effects of an absence of all functional UBE3A. Herein, we report the generation and functional characterization of a novel model of Angelman syndrome by deleting the entire Ube3a gene in the rat. We validated that this resulted in the first comprehensive gene deletion rodent model. Ultrasonic vocalizations from newborn Ube3a(m−/p+) were reduced in the maternal inherited deletion group with no observable change in the Ube3a(m+/p−) paternal transmission cohort. We also discovered Ube3a(m−/p+) exhibited delayed reflex development, motor deficits in rearing and fine motor skills, aberrant social communication, and impaired touchscreen learning and memory in young adults. These behavioral deficits were large in effect size and easily apparent in the larger rodent species. Low social communication was detected using a playback task that is unique to rats. Structural imaging illustrated decreased brain volume in Ube3a(m−/p+) and a variety of intriguing neuroanatomical phenotypes while Ube3a(m+/p−) did not exhibit altered neuroanatomy. Our report identifies, for the first time, unique AS relevant functional phenotypes and anatomical markers as preclinical outcomes to test various strategies for gene and molecular therapies in AS.
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spelling pubmed-70260782020-03-03 Translational outcomes in a full gene deletion of ubiquitin protein ligase E3A rat model of Angelman syndrome Berg, E. L. Pride, M. C. Petkova, S. P. Lee, R. D. Copping, N. A. Shen, Y. Adhikari, A. Fenton, T. A. Pedersen, L. R. Noakes, L. S. Nieman, B. J. Lerch, J. P. Harris, S. Born, H. A. Peters, M. M. Deng, P. Cameron, D. L. Fink, K. D. Beitnere, U. O’Geen, H. Anderson, A. E. Dindot, S. V. Nash, K. R. Weeber, E. J. Wöhr, M. Ellegood, J. Segal, D. J. Silverman, J. L. Transl Psychiatry Article Angelman syndrome (AS) is a rare neurodevelopmental disorder characterized by developmental delay, impaired communication, motor deficits and ataxia, intellectual disabilities, microcephaly, and seizures. The genetic cause of AS is the loss of expression of UBE3A (ubiquitin protein ligase E6-AP) in the brain, typically due to a deletion of the maternal 15q11-q13 region. Previous studies have been performed using a mouse model with a deletion of a single exon of Ube3a. Since three splice variants of Ube3a exist, this has led to a lack of consistent reports and the theory that perhaps not all mouse studies were assessing the effects of an absence of all functional UBE3A. Herein, we report the generation and functional characterization of a novel model of Angelman syndrome by deleting the entire Ube3a gene in the rat. We validated that this resulted in the first comprehensive gene deletion rodent model. Ultrasonic vocalizations from newborn Ube3a(m−/p+) were reduced in the maternal inherited deletion group with no observable change in the Ube3a(m+/p−) paternal transmission cohort. We also discovered Ube3a(m−/p+) exhibited delayed reflex development, motor deficits in rearing and fine motor skills, aberrant social communication, and impaired touchscreen learning and memory in young adults. These behavioral deficits were large in effect size and easily apparent in the larger rodent species. Low social communication was detected using a playback task that is unique to rats. Structural imaging illustrated decreased brain volume in Ube3a(m−/p+) and a variety of intriguing neuroanatomical phenotypes while Ube3a(m+/p−) did not exhibit altered neuroanatomy. Our report identifies, for the first time, unique AS relevant functional phenotypes and anatomical markers as preclinical outcomes to test various strategies for gene and molecular therapies in AS. Nature Publishing Group UK 2020-01-27 /pmc/articles/PMC7026078/ /pubmed/32066685 http://dx.doi.org/10.1038/s41398-020-0720-2 Text en © The Author(s) 2020 Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/.
spellingShingle Article
Berg, E. L.
Pride, M. C.
Petkova, S. P.
Lee, R. D.
Copping, N. A.
Shen, Y.
Adhikari, A.
Fenton, T. A.
Pedersen, L. R.
Noakes, L. S.
Nieman, B. J.
Lerch, J. P.
Harris, S.
Born, H. A.
Peters, M. M.
Deng, P.
Cameron, D. L.
Fink, K. D.
Beitnere, U.
O’Geen, H.
Anderson, A. E.
Dindot, S. V.
Nash, K. R.
Weeber, E. J.
Wöhr, M.
Ellegood, J.
Segal, D. J.
Silverman, J. L.
Translational outcomes in a full gene deletion of ubiquitin protein ligase E3A rat model of Angelman syndrome
title Translational outcomes in a full gene deletion of ubiquitin protein ligase E3A rat model of Angelman syndrome
title_full Translational outcomes in a full gene deletion of ubiquitin protein ligase E3A rat model of Angelman syndrome
title_fullStr Translational outcomes in a full gene deletion of ubiquitin protein ligase E3A rat model of Angelman syndrome
title_full_unstemmed Translational outcomes in a full gene deletion of ubiquitin protein ligase E3A rat model of Angelman syndrome
title_short Translational outcomes in a full gene deletion of ubiquitin protein ligase E3A rat model of Angelman syndrome
title_sort translational outcomes in a full gene deletion of ubiquitin protein ligase e3a rat model of angelman syndrome
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7026078/
https://www.ncbi.nlm.nih.gov/pubmed/32066685
http://dx.doi.org/10.1038/s41398-020-0720-2
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