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A Novel MAPT Mutation, G55R, in a Frontotemporal Dementia Patient Leads to Altered Tau Function

Over two dozen mutations in the gene encoding the microtubule associated protein tau cause a variety of neurodegenerative dementias known as tauopathies, including frontotemporal dementia (FTD), PSP, CBD and Pick's disease. The vast majority of these mutations map to the C-terminal region of ta...

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Autores principales: Iyer, Abhinaya, LaPointe, Nichole E., Zielke, Krzysztof, Berdynski, Mariusz, Guzman, Elmer, Barczak, Anna, Chodakowska-Żebrowska, Małgorzata, Barcikowska, Maria, Feinstein, Stuart, Żekanowski, Cezary
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3785453/
https://www.ncbi.nlm.nih.gov/pubmed/24086739
http://dx.doi.org/10.1371/journal.pone.0076409
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author Iyer, Abhinaya
LaPointe, Nichole E.
Zielke, Krzysztof
Berdynski, Mariusz
Guzman, Elmer
Barczak, Anna
Chodakowska-Żebrowska, Małgorzata
Barcikowska, Maria
Feinstein, Stuart
Żekanowski, Cezary
author_facet Iyer, Abhinaya
LaPointe, Nichole E.
Zielke, Krzysztof
Berdynski, Mariusz
Guzman, Elmer
Barczak, Anna
Chodakowska-Żebrowska, Małgorzata
Barcikowska, Maria
Feinstein, Stuart
Żekanowski, Cezary
author_sort Iyer, Abhinaya
collection PubMed
description Over two dozen mutations in the gene encoding the microtubule associated protein tau cause a variety of neurodegenerative dementias known as tauopathies, including frontotemporal dementia (FTD), PSP, CBD and Pick's disease. The vast majority of these mutations map to the C-terminal region of tau possessing microtubule assembly and microtubule dynamics regulatory activities as well as the ability to promote pathological tau aggregation. Here, we describe a novel and non-conservative tau mutation (G55R) mapping to an alternatively spliced exon encoding part of the N-terminal region of the protein in a patient with the behavioral variant of FTD. Although less well understood than the C-terminal region of tau, the N-terminal region can influence both MT mediated effects as well as tau aggregation. The mutation changes an uncharged glycine to a basic arginine in the midst of a highly conserved and very acidic region. In vitro, 4-repeat G55R tau nucleates microtubule assembly more effectively than wild-type 4-repeat tau; surprisingly, this effect is tau isoform specific and is not observed in a 3-repeat G55R tau versus 3-repeat wild-type tau comparison. In contrast, the G55R mutation has no effect upon the abilities of tau to regulate MT growing and shortening dynamics or to aggregate. Additionally, the mutation has no effect upon kinesin translocation in a microtubule gliding assay. Together, (i) we have identified a novel tau mutation mapping to a mutation deficient region of the protein in a bvFTD patient, and (ii) the G55R mutation affects the ability of tau to nucleate microtubule assembly in vitro in a 4-repeat tau isoform specific manner. This altered capability could markedly affect in vivo microtubule function and neuronal cell biology. We consider G55R to be a candidate mutation for bvFTD since additional criteria required to establish causality are not yet available for assessment.
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spelling pubmed-37854532013-10-01 A Novel MAPT Mutation, G55R, in a Frontotemporal Dementia Patient Leads to Altered Tau Function Iyer, Abhinaya LaPointe, Nichole E. Zielke, Krzysztof Berdynski, Mariusz Guzman, Elmer Barczak, Anna Chodakowska-Żebrowska, Małgorzata Barcikowska, Maria Feinstein, Stuart Żekanowski, Cezary PLoS One Research Article Over two dozen mutations in the gene encoding the microtubule associated protein tau cause a variety of neurodegenerative dementias known as tauopathies, including frontotemporal dementia (FTD), PSP, CBD and Pick's disease. The vast majority of these mutations map to the C-terminal region of tau possessing microtubule assembly and microtubule dynamics regulatory activities as well as the ability to promote pathological tau aggregation. Here, we describe a novel and non-conservative tau mutation (G55R) mapping to an alternatively spliced exon encoding part of the N-terminal region of the protein in a patient with the behavioral variant of FTD. Although less well understood than the C-terminal region of tau, the N-terminal region can influence both MT mediated effects as well as tau aggregation. The mutation changes an uncharged glycine to a basic arginine in the midst of a highly conserved and very acidic region. In vitro, 4-repeat G55R tau nucleates microtubule assembly more effectively than wild-type 4-repeat tau; surprisingly, this effect is tau isoform specific and is not observed in a 3-repeat G55R tau versus 3-repeat wild-type tau comparison. In contrast, the G55R mutation has no effect upon the abilities of tau to regulate MT growing and shortening dynamics or to aggregate. Additionally, the mutation has no effect upon kinesin translocation in a microtubule gliding assay. Together, (i) we have identified a novel tau mutation mapping to a mutation deficient region of the protein in a bvFTD patient, and (ii) the G55R mutation affects the ability of tau to nucleate microtubule assembly in vitro in a 4-repeat tau isoform specific manner. This altered capability could markedly affect in vivo microtubule function and neuronal cell biology. We consider G55R to be a candidate mutation for bvFTD since additional criteria required to establish causality are not yet available for assessment. Public Library of Science 2013-09-27 /pmc/articles/PMC3785453/ /pubmed/24086739 http://dx.doi.org/10.1371/journal.pone.0076409 Text en © 2013 Iyer et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Iyer, Abhinaya
LaPointe, Nichole E.
Zielke, Krzysztof
Berdynski, Mariusz
Guzman, Elmer
Barczak, Anna
Chodakowska-Żebrowska, Małgorzata
Barcikowska, Maria
Feinstein, Stuart
Żekanowski, Cezary
A Novel MAPT Mutation, G55R, in a Frontotemporal Dementia Patient Leads to Altered Tau Function
title A Novel MAPT Mutation, G55R, in a Frontotemporal Dementia Patient Leads to Altered Tau Function
title_full A Novel MAPT Mutation, G55R, in a Frontotemporal Dementia Patient Leads to Altered Tau Function
title_fullStr A Novel MAPT Mutation, G55R, in a Frontotemporal Dementia Patient Leads to Altered Tau Function
title_full_unstemmed A Novel MAPT Mutation, G55R, in a Frontotemporal Dementia Patient Leads to Altered Tau Function
title_short A Novel MAPT Mutation, G55R, in a Frontotemporal Dementia Patient Leads to Altered Tau Function
title_sort novel mapt mutation, g55r, in a frontotemporal dementia patient leads to altered tau function
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3785453/
https://www.ncbi.nlm.nih.gov/pubmed/24086739
http://dx.doi.org/10.1371/journal.pone.0076409
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