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RNA-binding deficient TDP-43 drives cognitive decline in a mouse model of TDP-43 proteinopathy

TDP-43 proteinopathies including frontotemporal lobar degeneration (FTLD) and amyotrophic lateral sclerosis (ALS) are neurodegenerative disorders characterized by aggregation and mislocalization of the nucleic acid-binding protein TDP-43 and subsequent neuronal dysfunction. Here, we developed endoge...

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Autores principales: Necarsulmer, Julie C, Simon, Jeremy M, Evangelista, Baggio A, Chen, Youjun, Tian, Xu, Nafees, Sara, Marquez, Ariana B, Jiang, Huijun, Wang, Ping, Ajit, Deepa, Nikolova, Viktoriya D, Harper, Kathryn M, Ezzell, J Ashley, Lin, Feng-Chang, Beltran, Adriana S, Moy, Sheryl S, Cohen, Todd J
Formato: Online Artículo Texto
Lenguaje:English
Publicado: eLife Sciences Publications, Ltd 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10567115/
https://www.ncbi.nlm.nih.gov/pubmed/37819053
http://dx.doi.org/10.7554/eLife.85921
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author Necarsulmer, Julie C
Simon, Jeremy M
Evangelista, Baggio A
Chen, Youjun
Tian, Xu
Nafees, Sara
Marquez, Ariana B
Jiang, Huijun
Wang, Ping
Ajit, Deepa
Nikolova, Viktoriya D
Harper, Kathryn M
Ezzell, J Ashley
Lin, Feng-Chang
Beltran, Adriana S
Moy, Sheryl S
Cohen, Todd J
author_facet Necarsulmer, Julie C
Simon, Jeremy M
Evangelista, Baggio A
Chen, Youjun
Tian, Xu
Nafees, Sara
Marquez, Ariana B
Jiang, Huijun
Wang, Ping
Ajit, Deepa
Nikolova, Viktoriya D
Harper, Kathryn M
Ezzell, J Ashley
Lin, Feng-Chang
Beltran, Adriana S
Moy, Sheryl S
Cohen, Todd J
author_sort Necarsulmer, Julie C
collection PubMed
description TDP-43 proteinopathies including frontotemporal lobar degeneration (FTLD) and amyotrophic lateral sclerosis (ALS) are neurodegenerative disorders characterized by aggregation and mislocalization of the nucleic acid-binding protein TDP-43 and subsequent neuronal dysfunction. Here, we developed endogenous models of sporadic TDP-43 proteinopathy based on the principle that disease-associated TDP-43 acetylation at lysine 145 (K145) alters TDP-43 conformation, impairs RNA-binding capacity, and induces downstream mis-regulation of target genes. Expression of acetylation-mimic TDP-43(K145Q) resulted in stress-induced nuclear TDP-43 foci and loss of TDP-43 function in primary mouse and human-induced pluripotent stem cell (hiPSC)-derived cortical neurons. Mice harboring the TDP-43(K145Q) mutation recapitulated key hallmarks of FTLD, including progressive TDP-43 phosphorylation and insolubility, TDP-43 mis-localization, transcriptomic and splicing alterations, and cognitive dysfunction. Our study supports a model in which TDP-43 acetylation drives neuronal dysfunction and cognitive decline through aberrant splicing and transcription of critical genes that regulate synaptic plasticity and stress response signaling. The neurodegenerative cascade initiated by TDP-43 acetylation recapitulates many aspects of human FTLD and provides a new paradigm to further interrogate TDP-43 proteinopathies.
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spelling pubmed-105671152023-10-12 RNA-binding deficient TDP-43 drives cognitive decline in a mouse model of TDP-43 proteinopathy Necarsulmer, Julie C Simon, Jeremy M Evangelista, Baggio A Chen, Youjun Tian, Xu Nafees, Sara Marquez, Ariana B Jiang, Huijun Wang, Ping Ajit, Deepa Nikolova, Viktoriya D Harper, Kathryn M Ezzell, J Ashley Lin, Feng-Chang Beltran, Adriana S Moy, Sheryl S Cohen, Todd J eLife Cell Biology TDP-43 proteinopathies including frontotemporal lobar degeneration (FTLD) and amyotrophic lateral sclerosis (ALS) are neurodegenerative disorders characterized by aggregation and mislocalization of the nucleic acid-binding protein TDP-43 and subsequent neuronal dysfunction. Here, we developed endogenous models of sporadic TDP-43 proteinopathy based on the principle that disease-associated TDP-43 acetylation at lysine 145 (K145) alters TDP-43 conformation, impairs RNA-binding capacity, and induces downstream mis-regulation of target genes. Expression of acetylation-mimic TDP-43(K145Q) resulted in stress-induced nuclear TDP-43 foci and loss of TDP-43 function in primary mouse and human-induced pluripotent stem cell (hiPSC)-derived cortical neurons. Mice harboring the TDP-43(K145Q) mutation recapitulated key hallmarks of FTLD, including progressive TDP-43 phosphorylation and insolubility, TDP-43 mis-localization, transcriptomic and splicing alterations, and cognitive dysfunction. Our study supports a model in which TDP-43 acetylation drives neuronal dysfunction and cognitive decline through aberrant splicing and transcription of critical genes that regulate synaptic plasticity and stress response signaling. The neurodegenerative cascade initiated by TDP-43 acetylation recapitulates many aspects of human FTLD and provides a new paradigm to further interrogate TDP-43 proteinopathies. eLife Sciences Publications, Ltd 2023-10-11 /pmc/articles/PMC10567115/ /pubmed/37819053 http://dx.doi.org/10.7554/eLife.85921 Text en © 2023, Necarsulmer et al https://creativecommons.org/licenses/by/4.0/This article is distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use and redistribution provided that the original author and source are credited.
spellingShingle Cell Biology
Necarsulmer, Julie C
Simon, Jeremy M
Evangelista, Baggio A
Chen, Youjun
Tian, Xu
Nafees, Sara
Marquez, Ariana B
Jiang, Huijun
Wang, Ping
Ajit, Deepa
Nikolova, Viktoriya D
Harper, Kathryn M
Ezzell, J Ashley
Lin, Feng-Chang
Beltran, Adriana S
Moy, Sheryl S
Cohen, Todd J
RNA-binding deficient TDP-43 drives cognitive decline in a mouse model of TDP-43 proteinopathy
title RNA-binding deficient TDP-43 drives cognitive decline in a mouse model of TDP-43 proteinopathy
title_full RNA-binding deficient TDP-43 drives cognitive decline in a mouse model of TDP-43 proteinopathy
title_fullStr RNA-binding deficient TDP-43 drives cognitive decline in a mouse model of TDP-43 proteinopathy
title_full_unstemmed RNA-binding deficient TDP-43 drives cognitive decline in a mouse model of TDP-43 proteinopathy
title_short RNA-binding deficient TDP-43 drives cognitive decline in a mouse model of TDP-43 proteinopathy
title_sort rna-binding deficient tdp-43 drives cognitive decline in a mouse model of tdp-43 proteinopathy
topic Cell Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10567115/
https://www.ncbi.nlm.nih.gov/pubmed/37819053
http://dx.doi.org/10.7554/eLife.85921
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