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Tau deposition drives neuropathological, inflammatory and behavioral abnormalities independently of neuronal loss in a novel mouse model

Aberrant tau protein accumulation drives neurofibrillary tangle (NFT) formation in several neurodegenerative diseases. Currently, efforts to elucidate pathogenic mechanisms and assess the efficacy of therapeutic targets are limited by constraints of existing models of tauopathy. In order to generate...

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Autores principales: Cook, Casey, Kang, Silvia S., Carlomagno, Yari, Lin, Wen-Lang, Yue, Mei, Kurti, Aishe, Shinohara, Mitsuru, Jansen-West, Karen, Perkerson, Emilie, Castanedes-Casey, Monica, Rousseau, Linda, Phillips, Virginia, Bu, Guojun, Dickson, Dennis W., Petrucelli, Leonard, Fryer, John D.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4599677/
https://www.ncbi.nlm.nih.gov/pubmed/26276810
http://dx.doi.org/10.1093/hmg/ddv336
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author Cook, Casey
Kang, Silvia S.
Carlomagno, Yari
Lin, Wen-Lang
Yue, Mei
Kurti, Aishe
Shinohara, Mitsuru
Jansen-West, Karen
Perkerson, Emilie
Castanedes-Casey, Monica
Rousseau, Linda
Phillips, Virginia
Bu, Guojun
Dickson, Dennis W.
Petrucelli, Leonard
Fryer, John D.
author_facet Cook, Casey
Kang, Silvia S.
Carlomagno, Yari
Lin, Wen-Lang
Yue, Mei
Kurti, Aishe
Shinohara, Mitsuru
Jansen-West, Karen
Perkerson, Emilie
Castanedes-Casey, Monica
Rousseau, Linda
Phillips, Virginia
Bu, Guojun
Dickson, Dennis W.
Petrucelli, Leonard
Fryer, John D.
author_sort Cook, Casey
collection PubMed
description Aberrant tau protein accumulation drives neurofibrillary tangle (NFT) formation in several neurodegenerative diseases. Currently, efforts to elucidate pathogenic mechanisms and assess the efficacy of therapeutic targets are limited by constraints of existing models of tauopathy. In order to generate a more versatile mouse model of tauopathy, somatic brain transgenesis was utilized to deliver adeno-associated virus serotype 1 (AAV1) encoding human mutant P301L-tau compared with GFP control. At 6 months of age, we observed widespread human tau expression with concomitant accumulation of hyperphosphorylated and abnormally folded proteinase K resistant tau. However, no overt neuronal loss was observed, though significant abnormalities were noted in the postsynaptic scaffolding protein PSD95. Neurofibrillary pathology was also detected with Gallyas silver stain and Thioflavin-S, and electron microscopy revealed the deposition of closely packed filaments. In addition to classic markers of tauopathy, significant neuroinflammation and extensive gliosis were detected in AAV1-Tau(P301L) mice. This model also recapitulates the behavioral phenotype characteristic of mouse models of tauopathy, including abnormalities in exploration, anxiety, and learning and memory. These findings indicate that biochemical and neuropathological hallmarks of tauopathies are accurately conserved and are independent of cell death in this novel AAV-based model of tauopathy, which offers exceptional versatility and speed in comparison with existing transgenic models. Therefore, we anticipate this approach will facilitate the identification and validation of genetic modifiers of disease, as well as accelerate preclinical assessment of potential therapeutic targets.
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spelling pubmed-45996772015-10-14 Tau deposition drives neuropathological, inflammatory and behavioral abnormalities independently of neuronal loss in a novel mouse model Cook, Casey Kang, Silvia S. Carlomagno, Yari Lin, Wen-Lang Yue, Mei Kurti, Aishe Shinohara, Mitsuru Jansen-West, Karen Perkerson, Emilie Castanedes-Casey, Monica Rousseau, Linda Phillips, Virginia Bu, Guojun Dickson, Dennis W. Petrucelli, Leonard Fryer, John D. Hum Mol Genet Articles Aberrant tau protein accumulation drives neurofibrillary tangle (NFT) formation in several neurodegenerative diseases. Currently, efforts to elucidate pathogenic mechanisms and assess the efficacy of therapeutic targets are limited by constraints of existing models of tauopathy. In order to generate a more versatile mouse model of tauopathy, somatic brain transgenesis was utilized to deliver adeno-associated virus serotype 1 (AAV1) encoding human mutant P301L-tau compared with GFP control. At 6 months of age, we observed widespread human tau expression with concomitant accumulation of hyperphosphorylated and abnormally folded proteinase K resistant tau. However, no overt neuronal loss was observed, though significant abnormalities were noted in the postsynaptic scaffolding protein PSD95. Neurofibrillary pathology was also detected with Gallyas silver stain and Thioflavin-S, and electron microscopy revealed the deposition of closely packed filaments. In addition to classic markers of tauopathy, significant neuroinflammation and extensive gliosis were detected in AAV1-Tau(P301L) mice. This model also recapitulates the behavioral phenotype characteristic of mouse models of tauopathy, including abnormalities in exploration, anxiety, and learning and memory. These findings indicate that biochemical and neuropathological hallmarks of tauopathies are accurately conserved and are independent of cell death in this novel AAV-based model of tauopathy, which offers exceptional versatility and speed in comparison with existing transgenic models. Therefore, we anticipate this approach will facilitate the identification and validation of genetic modifiers of disease, as well as accelerate preclinical assessment of potential therapeutic targets. Oxford University Press 2015-11-01 2015-08-13 /pmc/articles/PMC4599677/ /pubmed/26276810 http://dx.doi.org/10.1093/hmg/ddv336 Text en © The Author 2015. 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
Cook, Casey
Kang, Silvia S.
Carlomagno, Yari
Lin, Wen-Lang
Yue, Mei
Kurti, Aishe
Shinohara, Mitsuru
Jansen-West, Karen
Perkerson, Emilie
Castanedes-Casey, Monica
Rousseau, Linda
Phillips, Virginia
Bu, Guojun
Dickson, Dennis W.
Petrucelli, Leonard
Fryer, John D.
Tau deposition drives neuropathological, inflammatory and behavioral abnormalities independently of neuronal loss in a novel mouse model
title Tau deposition drives neuropathological, inflammatory and behavioral abnormalities independently of neuronal loss in a novel mouse model
title_full Tau deposition drives neuropathological, inflammatory and behavioral abnormalities independently of neuronal loss in a novel mouse model
title_fullStr Tau deposition drives neuropathological, inflammatory and behavioral abnormalities independently of neuronal loss in a novel mouse model
title_full_unstemmed Tau deposition drives neuropathological, inflammatory and behavioral abnormalities independently of neuronal loss in a novel mouse model
title_short Tau deposition drives neuropathological, inflammatory and behavioral abnormalities independently of neuronal loss in a novel mouse model
title_sort tau deposition drives neuropathological, inflammatory and behavioral abnormalities independently of neuronal loss in a novel mouse model
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4599677/
https://www.ncbi.nlm.nih.gov/pubmed/26276810
http://dx.doi.org/10.1093/hmg/ddv336
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