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Gait Ignition Failure in JNPL3 Human Tau-mutant Mice

Cognitive impairments and motor dysfunction are commonly observed behavioral phenotypes in genetic animal models of neurodegenerative diseases. JNPL3 transgenic mice expressing human P301L-mutant tau display motor disturbances with age- and gene dose-dependent development of neurofibrillary tangles,...

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Autores principales: Jang, HoChung, Ryu, Jung Hwa, Shin, Kyung Min, Seo, Na-young, Kim, Gyu Hyun, Huh, Yang Hoon, Pae, Ae Nim, Lee, Kea Joo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Korean Society for Brain and Neural Science 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6614071/
https://www.ncbi.nlm.nih.gov/pubmed/31308799
http://dx.doi.org/10.5607/en.2019.28.3.404
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author Jang, HoChung
Ryu, Jung Hwa
Shin, Kyung Min
Seo, Na-young
Kim, Gyu Hyun
Huh, Yang Hoon
Pae, Ae Nim
Lee, Kea Joo
author_facet Jang, HoChung
Ryu, Jung Hwa
Shin, Kyung Min
Seo, Na-young
Kim, Gyu Hyun
Huh, Yang Hoon
Pae, Ae Nim
Lee, Kea Joo
author_sort Jang, HoChung
collection PubMed
description Cognitive impairments and motor dysfunction are commonly observed behavioral phenotypes in genetic animal models of neurodegenerative diseases. JNPL3 transgenic mice expressing human P301L-mutant tau display motor disturbances with age- and gene dose-dependent development of neurofibrillary tangles, suggesting that tau pathology causes neurodegeneration associated with motor behavioral abnormalities. Although gait ignition failure (GIF), a syndrome marked by difficulty in initiating locomotion, has been described in patients with certain forms of tauopathies, transgenic mouse models mirroring human GIF syndrome have yet to be reported. Using the open field and balance beam tests, here we discovered that JNPL3 homozygous mice exhibit a marked delay of movement initiation. The elevated plus maze excluded the possibility that hesitation to start in JNPL3 mice was caused by enhanced levels of anxiety. Considering the normal gait ignition in rTg4510 mice expressing the same mutant tau in the forebrain, GIF in JNPL3 mice seems to arise from abnormal tau deposition in the hindbrain areas involved in locomotor initiation. Accordingly, immunohistochemistry revealed highly phosphorylated paired helical filament tau in JNPL3 brainstem areas associated with gait initiation. Together, these findings demonstrate a novel behavioral phenotype of impaired gait initiation in JNPL3 mice and underscore the value of this mouse line as a tool to study the neural mechanisms and potential treatments for human GIF syndrome.
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spelling pubmed-66140712019-07-15 Gait Ignition Failure in JNPL3 Human Tau-mutant Mice Jang, HoChung Ryu, Jung Hwa Shin, Kyung Min Seo, Na-young Kim, Gyu Hyun Huh, Yang Hoon Pae, Ae Nim Lee, Kea Joo Exp Neurobiol Original Article Cognitive impairments and motor dysfunction are commonly observed behavioral phenotypes in genetic animal models of neurodegenerative diseases. JNPL3 transgenic mice expressing human P301L-mutant tau display motor disturbances with age- and gene dose-dependent development of neurofibrillary tangles, suggesting that tau pathology causes neurodegeneration associated with motor behavioral abnormalities. Although gait ignition failure (GIF), a syndrome marked by difficulty in initiating locomotion, has been described in patients with certain forms of tauopathies, transgenic mouse models mirroring human GIF syndrome have yet to be reported. Using the open field and balance beam tests, here we discovered that JNPL3 homozygous mice exhibit a marked delay of movement initiation. The elevated plus maze excluded the possibility that hesitation to start in JNPL3 mice was caused by enhanced levels of anxiety. Considering the normal gait ignition in rTg4510 mice expressing the same mutant tau in the forebrain, GIF in JNPL3 mice seems to arise from abnormal tau deposition in the hindbrain areas involved in locomotor initiation. Accordingly, immunohistochemistry revealed highly phosphorylated paired helical filament tau in JNPL3 brainstem areas associated with gait initiation. Together, these findings demonstrate a novel behavioral phenotype of impaired gait initiation in JNPL3 mice and underscore the value of this mouse line as a tool to study the neural mechanisms and potential treatments for human GIF syndrome. The Korean Society for Brain and Neural Science 2019-06 2019-06-26 /pmc/articles/PMC6614071/ /pubmed/31308799 http://dx.doi.org/10.5607/en.2019.28.3.404 Text en Copyright © Experimental Neurobiology 2019. http://creativecommons.org/licenses/by-nc/4.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/4.0) which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Article
Jang, HoChung
Ryu, Jung Hwa
Shin, Kyung Min
Seo, Na-young
Kim, Gyu Hyun
Huh, Yang Hoon
Pae, Ae Nim
Lee, Kea Joo
Gait Ignition Failure in JNPL3 Human Tau-mutant Mice
title Gait Ignition Failure in JNPL3 Human Tau-mutant Mice
title_full Gait Ignition Failure in JNPL3 Human Tau-mutant Mice
title_fullStr Gait Ignition Failure in JNPL3 Human Tau-mutant Mice
title_full_unstemmed Gait Ignition Failure in JNPL3 Human Tau-mutant Mice
title_short Gait Ignition Failure in JNPL3 Human Tau-mutant Mice
title_sort gait ignition failure in jnpl3 human tau-mutant mice
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6614071/
https://www.ncbi.nlm.nih.gov/pubmed/31308799
http://dx.doi.org/10.5607/en.2019.28.3.404
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