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Loss of MeCP2 in the rat models regression, impaired sociability and transcriptional deficits of Rett syndrome

Mouse models of the transcriptional modulator Methyl-CpG-Binding Protein 2 (MeCP2) have advanced our understanding of Rett syndrome (RTT). RTT is a ‘prototypical’ neurodevelopmental disorder with many clinical features overlapping with other intellectual and developmental disabilities (IDD). Therape...

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Autores principales: Veeraragavan, Surabi, Wan, Ying-Wooi, Connolly, Daniel R., Hamilton, Shannon M., Ward, Christopher S., Soriano, Sirena, Pitcher, Meagan R., McGraw, Christopher M., Huang, Sharon G., Green, Jennie R., Yuva, Lisa A., Liang, Agnes J., Neul, Jeffrey L., Yasui, Dag H., LaSalle, Janine M., Liu, Zhandong, Paylor, Richard, Samaco, Rodney C.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5179927/
https://www.ncbi.nlm.nih.gov/pubmed/27365498
http://dx.doi.org/10.1093/hmg/ddw178
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author Veeraragavan, Surabi
Wan, Ying-Wooi
Connolly, Daniel R.
Hamilton, Shannon M.
Ward, Christopher S.
Soriano, Sirena
Pitcher, Meagan R.
McGraw, Christopher M.
Huang, Sharon G.
Green, Jennie R.
Yuva, Lisa A.
Liang, Agnes J.
Neul, Jeffrey L.
Yasui, Dag H.
LaSalle, Janine M.
Liu, Zhandong
Paylor, Richard
Samaco, Rodney C.
author_facet Veeraragavan, Surabi
Wan, Ying-Wooi
Connolly, Daniel R.
Hamilton, Shannon M.
Ward, Christopher S.
Soriano, Sirena
Pitcher, Meagan R.
McGraw, Christopher M.
Huang, Sharon G.
Green, Jennie R.
Yuva, Lisa A.
Liang, Agnes J.
Neul, Jeffrey L.
Yasui, Dag H.
LaSalle, Janine M.
Liu, Zhandong
Paylor, Richard
Samaco, Rodney C.
author_sort Veeraragavan, Surabi
collection PubMed
description Mouse models of the transcriptional modulator Methyl-CpG-Binding Protein 2 (MeCP2) have advanced our understanding of Rett syndrome (RTT). RTT is a ‘prototypical’ neurodevelopmental disorder with many clinical features overlapping with other intellectual and developmental disabilities (IDD). Therapeutic interventions for RTT may therefore have broader applications. However, the reliance on the laboratory mouse to identify viable therapies for the human condition may present challenges in translating findings from the bench to the clinic. In addition, the need to identify outcome measures in well-chosen animal models is critical for preclinical trials. Here, we report that a novel Mecp2 rat model displays high face validity for modelling psychomotor regression of a learned skill, a deficit that has not been shown in Mecp2 mice. Juvenile play, a behavioural feature that is uniquely present in rats and not mice, is also impaired in female Mecp2 rats. Finally, we demonstrate that evaluating the molecular consequences of the loss of MeCP2 in both mouse and rat may result in higher predictive validity with respect to transcriptional changes in the human RTT brain. These data underscore the similarities and differences caused by the loss of MeCP2 among divergent rodent species which may have important implications for the treatment of individuals with disease-causing MECP2 mutations. Taken together, these findings demonstrate that the Mecp2 rat model is a complementary tool with unique features for the study of RTT and highlight the potential benefit of cross-species analyses in identifying potential disease-relevant preclinical outcome measures.
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spelling pubmed-51799272016-12-27 Loss of MeCP2 in the rat models regression, impaired sociability and transcriptional deficits of Rett syndrome Veeraragavan, Surabi Wan, Ying-Wooi Connolly, Daniel R. Hamilton, Shannon M. Ward, Christopher S. Soriano, Sirena Pitcher, Meagan R. McGraw, Christopher M. Huang, Sharon G. Green, Jennie R. Yuva, Lisa A. Liang, Agnes J. Neul, Jeffrey L. Yasui, Dag H. LaSalle, Janine M. Liu, Zhandong Paylor, Richard Samaco, Rodney C. Hum Mol Genet Articles Mouse models of the transcriptional modulator Methyl-CpG-Binding Protein 2 (MeCP2) have advanced our understanding of Rett syndrome (RTT). RTT is a ‘prototypical’ neurodevelopmental disorder with many clinical features overlapping with other intellectual and developmental disabilities (IDD). Therapeutic interventions for RTT may therefore have broader applications. However, the reliance on the laboratory mouse to identify viable therapies for the human condition may present challenges in translating findings from the bench to the clinic. In addition, the need to identify outcome measures in well-chosen animal models is critical for preclinical trials. Here, we report that a novel Mecp2 rat model displays high face validity for modelling psychomotor regression of a learned skill, a deficit that has not been shown in Mecp2 mice. Juvenile play, a behavioural feature that is uniquely present in rats and not mice, is also impaired in female Mecp2 rats. Finally, we demonstrate that evaluating the molecular consequences of the loss of MeCP2 in both mouse and rat may result in higher predictive validity with respect to transcriptional changes in the human RTT brain. These data underscore the similarities and differences caused by the loss of MeCP2 among divergent rodent species which may have important implications for the treatment of individuals with disease-causing MECP2 mutations. Taken together, these findings demonstrate that the Mecp2 rat model is a complementary tool with unique features for the study of RTT and highlight the potential benefit of cross-species analyses in identifying potential disease-relevant preclinical outcome measures. Oxford University Press 2016-08-01 2016-06-30 /pmc/articles/PMC5179927/ /pubmed/27365498 http://dx.doi.org/10.1093/hmg/ddw178 Text en © The Author 2016. Published by Oxford University Press. 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 reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Articles
Veeraragavan, Surabi
Wan, Ying-Wooi
Connolly, Daniel R.
Hamilton, Shannon M.
Ward, Christopher S.
Soriano, Sirena
Pitcher, Meagan R.
McGraw, Christopher M.
Huang, Sharon G.
Green, Jennie R.
Yuva, Lisa A.
Liang, Agnes J.
Neul, Jeffrey L.
Yasui, Dag H.
LaSalle, Janine M.
Liu, Zhandong
Paylor, Richard
Samaco, Rodney C.
Loss of MeCP2 in the rat models regression, impaired sociability and transcriptional deficits of Rett syndrome
title Loss of MeCP2 in the rat models regression, impaired sociability and transcriptional deficits of Rett syndrome
title_full Loss of MeCP2 in the rat models regression, impaired sociability and transcriptional deficits of Rett syndrome
title_fullStr Loss of MeCP2 in the rat models regression, impaired sociability and transcriptional deficits of Rett syndrome
title_full_unstemmed Loss of MeCP2 in the rat models regression, impaired sociability and transcriptional deficits of Rett syndrome
title_short Loss of MeCP2 in the rat models regression, impaired sociability and transcriptional deficits of Rett syndrome
title_sort loss of mecp2 in the rat models regression, impaired sociability and transcriptional deficits of rett syndrome
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5179927/
https://www.ncbi.nlm.nih.gov/pubmed/27365498
http://dx.doi.org/10.1093/hmg/ddw178
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