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Conformation Determines the Seeding Potencies of Native and Recombinant Tau Aggregates

Intracellular Tau inclusions are a pathological hallmark of several neurodegenerative diseases, collectively known as the tauopathies. They include Alzheimer disease, tangle-only dementia, Pick disease, argyrophilic grain disease, chronic traumatic encephalopathy, progressive supranuclear palsy, and...

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Autores principales: Falcon, Benjamin, Cavallini, Annalisa, Angers, Rachel, Glover, Sarah, Murray, Tracey K., Barnham, Luanda, Jackson, Samuel, O'Neill, Michael J., Isaacs, Adrian M., Hutton, Michael L., Szekeres, Philip G., Goedert, Michel, Bose, Suchira
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4294473/
https://www.ncbi.nlm.nih.gov/pubmed/25406315
http://dx.doi.org/10.1074/jbc.M114.589309
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author Falcon, Benjamin
Cavallini, Annalisa
Angers, Rachel
Glover, Sarah
Murray, Tracey K.
Barnham, Luanda
Jackson, Samuel
O'Neill, Michael J.
Isaacs, Adrian M.
Hutton, Michael L.
Szekeres, Philip G.
Goedert, Michel
Bose, Suchira
author_facet Falcon, Benjamin
Cavallini, Annalisa
Angers, Rachel
Glover, Sarah
Murray, Tracey K.
Barnham, Luanda
Jackson, Samuel
O'Neill, Michael J.
Isaacs, Adrian M.
Hutton, Michael L.
Szekeres, Philip G.
Goedert, Michel
Bose, Suchira
author_sort Falcon, Benjamin
collection PubMed
description Intracellular Tau inclusions are a pathological hallmark of several neurodegenerative diseases, collectively known as the tauopathies. They include Alzheimer disease, tangle-only dementia, Pick disease, argyrophilic grain disease, chronic traumatic encephalopathy, progressive supranuclear palsy, and corticobasal degeneration. Tau pathology appears to spread through intercellular propagation, requiring the formation of assembled “prion-like” species. Several cell and animal models have been described that recapitulate aspects of this phenomenon. However, the molecular characteristics of seed-competent Tau remain unclear. Here, we have used a cell model to understand the relationships between Tau structure/phosphorylation and seeding by aggregated Tau species from the brains of mice transgenic for human mutant P301S Tau and full-length aggregated recombinant P301S Tau. Deletion of motifs (275)VQIINK(280) and (306)VQIVYK(311) abolished the seeding activity of recombinant full-length Tau, suggesting that its aggregation was necessary for seeding. We describe conformational differences between native and synthetic Tau aggregates that may account for the higher seeding activity of native assembled Tau. When added to aggregated Tau seeds from the brains of mice transgenic for P301S Tau, soluble recombinant Tau aggregated and acquired the molecular properties of aggregated Tau from transgenic mouse brain. We show that seeding is conferred by aggregated Tau that enters cells through macropinocytosis and seeds the assembly of endogenous Tau into filaments.
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spelling pubmed-42944732015-01-21 Conformation Determines the Seeding Potencies of Native and Recombinant Tau Aggregates Falcon, Benjamin Cavallini, Annalisa Angers, Rachel Glover, Sarah Murray, Tracey K. Barnham, Luanda Jackson, Samuel O'Neill, Michael J. Isaacs, Adrian M. Hutton, Michael L. Szekeres, Philip G. Goedert, Michel Bose, Suchira J Biol Chem Neurobiology Intracellular Tau inclusions are a pathological hallmark of several neurodegenerative diseases, collectively known as the tauopathies. They include Alzheimer disease, tangle-only dementia, Pick disease, argyrophilic grain disease, chronic traumatic encephalopathy, progressive supranuclear palsy, and corticobasal degeneration. Tau pathology appears to spread through intercellular propagation, requiring the formation of assembled “prion-like” species. Several cell and animal models have been described that recapitulate aspects of this phenomenon. However, the molecular characteristics of seed-competent Tau remain unclear. Here, we have used a cell model to understand the relationships between Tau structure/phosphorylation and seeding by aggregated Tau species from the brains of mice transgenic for human mutant P301S Tau and full-length aggregated recombinant P301S Tau. Deletion of motifs (275)VQIINK(280) and (306)VQIVYK(311) abolished the seeding activity of recombinant full-length Tau, suggesting that its aggregation was necessary for seeding. We describe conformational differences between native and synthetic Tau aggregates that may account for the higher seeding activity of native assembled Tau. When added to aggregated Tau seeds from the brains of mice transgenic for P301S Tau, soluble recombinant Tau aggregated and acquired the molecular properties of aggregated Tau from transgenic mouse brain. We show that seeding is conferred by aggregated Tau that enters cells through macropinocytosis and seeds the assembly of endogenous Tau into filaments. American Society for Biochemistry and Molecular Biology 2015-01-09 2014-11-18 /pmc/articles/PMC4294473/ /pubmed/25406315 http://dx.doi.org/10.1074/jbc.M114.589309 Text en © 2015 by The American Society for Biochemistry and Molecular Biology, Inc. Author's Choice—Final version full access. Creative Commons Attribution Unported License (http://creativecommons.org/licenses/by/3.0/) applies to Author Choice Articles
spellingShingle Neurobiology
Falcon, Benjamin
Cavallini, Annalisa
Angers, Rachel
Glover, Sarah
Murray, Tracey K.
Barnham, Luanda
Jackson, Samuel
O'Neill, Michael J.
Isaacs, Adrian M.
Hutton, Michael L.
Szekeres, Philip G.
Goedert, Michel
Bose, Suchira
Conformation Determines the Seeding Potencies of Native and Recombinant Tau Aggregates
title Conformation Determines the Seeding Potencies of Native and Recombinant Tau Aggregates
title_full Conformation Determines the Seeding Potencies of Native and Recombinant Tau Aggregates
title_fullStr Conformation Determines the Seeding Potencies of Native and Recombinant Tau Aggregates
title_full_unstemmed Conformation Determines the Seeding Potencies of Native and Recombinant Tau Aggregates
title_short Conformation Determines the Seeding Potencies of Native and Recombinant Tau Aggregates
title_sort conformation determines the seeding potencies of native and recombinant tau aggregates
topic Neurobiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4294473/
https://www.ncbi.nlm.nih.gov/pubmed/25406315
http://dx.doi.org/10.1074/jbc.M114.589309
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