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Blocking Effects of Human Tau on Squid Giant Synapse Transmission and Its Prevention by T-817 MA

Filamentous tau inclusions are hallmarks of Alzheimer's disease and related neurodegenerative tauopathies, but the molecular mechanisms involved in tau-mediated changes in neuronal function and their possible effects on synaptic transmission are unknown. We have evaluated the effects of human t...

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Autores principales: Moreno, Herman, Choi, Soonwook, Yu, Eunah, Brusco, Janaina, Avila, Jesus, Moreira, Jorge E., Sugimori, Mutsuyuki, Llinás, Rodolfo R.
Formato: Texto
Lenguaje:English
Publicado: Frontiers Research Foundation 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3099362/
https://www.ncbi.nlm.nih.gov/pubmed/21629767
http://dx.doi.org/10.3389/fnsyn.2011.00003
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author Moreno, Herman
Choi, Soonwook
Yu, Eunah
Brusco, Janaina
Avila, Jesus
Moreira, Jorge E.
Sugimori, Mutsuyuki
Llinás, Rodolfo R.
author_facet Moreno, Herman
Choi, Soonwook
Yu, Eunah
Brusco, Janaina
Avila, Jesus
Moreira, Jorge E.
Sugimori, Mutsuyuki
Llinás, Rodolfo R.
author_sort Moreno, Herman
collection PubMed
description Filamentous tau inclusions are hallmarks of Alzheimer's disease and related neurodegenerative tauopathies, but the molecular mechanisms involved in tau-mediated changes in neuronal function and their possible effects on synaptic transmission are unknown. We have evaluated the effects of human tau protein injected directly into the presynaptic terminal axon of the squid giant synapse, which affords functional, structural, and biochemical analysis of its action on the synaptic release process. Indeed, we have found that at physiological concentration recombinant human tau (h-tau42) becomes phosphorylated, produces a rapid synaptic transmission block, and induces the formation of clusters of aggregated synaptic vesicles in the vicinity of the active zone. Presynaptic voltage clamp recordings demonstrate that h-tau42 does not modify the presynaptic calcium current amplitude or kinetics. Analysis of synaptic noise at the post-synaptic axon following presynaptic h-tau42 microinjection revealed an initial phase of increase spontaneous transmitter release followed by a marked reduction in noise. Finally, systemic administration of T-817MA, a proposed neuro-protective agent, rescued tau-induced synaptic abnormalities. Our results show novel mechanisms of h-tau42 mediated synaptic transmission failure and identify a potential therapeutic agent to treat tau-related neurotoxicity.
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spelling pubmed-30993622011-05-31 Blocking Effects of Human Tau on Squid Giant Synapse Transmission and Its Prevention by T-817 MA Moreno, Herman Choi, Soonwook Yu, Eunah Brusco, Janaina Avila, Jesus Moreira, Jorge E. Sugimori, Mutsuyuki Llinás, Rodolfo R. Front Synaptic Neurosci Neuroscience Filamentous tau inclusions are hallmarks of Alzheimer's disease and related neurodegenerative tauopathies, but the molecular mechanisms involved in tau-mediated changes in neuronal function and their possible effects on synaptic transmission are unknown. We have evaluated the effects of human tau protein injected directly into the presynaptic terminal axon of the squid giant synapse, which affords functional, structural, and biochemical analysis of its action on the synaptic release process. Indeed, we have found that at physiological concentration recombinant human tau (h-tau42) becomes phosphorylated, produces a rapid synaptic transmission block, and induces the formation of clusters of aggregated synaptic vesicles in the vicinity of the active zone. Presynaptic voltage clamp recordings demonstrate that h-tau42 does not modify the presynaptic calcium current amplitude or kinetics. Analysis of synaptic noise at the post-synaptic axon following presynaptic h-tau42 microinjection revealed an initial phase of increase spontaneous transmitter release followed by a marked reduction in noise. Finally, systemic administration of T-817MA, a proposed neuro-protective agent, rescued tau-induced synaptic abnormalities. Our results show novel mechanisms of h-tau42 mediated synaptic transmission failure and identify a potential therapeutic agent to treat tau-related neurotoxicity. Frontiers Research Foundation 2011-05-17 /pmc/articles/PMC3099362/ /pubmed/21629767 http://dx.doi.org/10.3389/fnsyn.2011.00003 Text en Copyright © 2011 Moreno, Choi, Yu, Brusco, Avila, Moreira, Sugimori and Llinás. http://www.frontiersin.org/licenseagreement This is an open-access article subject to a non-exclusive license between the authors and Frontiers Media SA, which permits use, distribution and reproduction in other forums, provided the original authors and source are credited and other Frontiers conditions are complied with
spellingShingle Neuroscience
Moreno, Herman
Choi, Soonwook
Yu, Eunah
Brusco, Janaina
Avila, Jesus
Moreira, Jorge E.
Sugimori, Mutsuyuki
Llinás, Rodolfo R.
Blocking Effects of Human Tau on Squid Giant Synapse Transmission and Its Prevention by T-817 MA
title Blocking Effects of Human Tau on Squid Giant Synapse Transmission and Its Prevention by T-817 MA
title_full Blocking Effects of Human Tau on Squid Giant Synapse Transmission and Its Prevention by T-817 MA
title_fullStr Blocking Effects of Human Tau on Squid Giant Synapse Transmission and Its Prevention by T-817 MA
title_full_unstemmed Blocking Effects of Human Tau on Squid Giant Synapse Transmission and Its Prevention by T-817 MA
title_short Blocking Effects of Human Tau on Squid Giant Synapse Transmission and Its Prevention by T-817 MA
title_sort blocking effects of human tau on squid giant synapse transmission and its prevention by t-817 ma
topic Neuroscience
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3099362/
https://www.ncbi.nlm.nih.gov/pubmed/21629767
http://dx.doi.org/10.3389/fnsyn.2011.00003
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