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Reversible Tau Phosphorylation Induced by Synthetic Torpor in the Spinal Cord of the Rat

Tau is a key protein in neurons, where it affects the dynamics of the microtubule system. The hyperphosphorylation of Tau (PP-Tau) commonly leads to the formation of neurofibrillary tangles, as it occurs in tauopathies, a group of neurodegenerative diseases, including Alzheimer's. Hypothermia-r...

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Autores principales: Hitrec, Timna, Squarcio, Fabio, Cerri, Matteo, Martelli, Davide, Occhinegro, Alessandra, Piscitiello, Emiliana, Tupone, Domenico, Amici, Roberto, Luppi, Marco
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7884466/
https://www.ncbi.nlm.nih.gov/pubmed/33603651
http://dx.doi.org/10.3389/fnana.2021.592288
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author Hitrec, Timna
Squarcio, Fabio
Cerri, Matteo
Martelli, Davide
Occhinegro, Alessandra
Piscitiello, Emiliana
Tupone, Domenico
Amici, Roberto
Luppi, Marco
author_facet Hitrec, Timna
Squarcio, Fabio
Cerri, Matteo
Martelli, Davide
Occhinegro, Alessandra
Piscitiello, Emiliana
Tupone, Domenico
Amici, Roberto
Luppi, Marco
author_sort Hitrec, Timna
collection PubMed
description Tau is a key protein in neurons, where it affects the dynamics of the microtubule system. The hyperphosphorylation of Tau (PP-Tau) commonly leads to the formation of neurofibrillary tangles, as it occurs in tauopathies, a group of neurodegenerative diseases, including Alzheimer's. Hypothermia-related accumulation of PP-Tau has been described in hibernators and during synthetic torpor (ST), a torpor-like condition that has been induced in rats, a non-hibernating species. Remarkably, in ST PP-Tau is reversible and Tau de-phosphorylates within a few hours following the torpor bout, apparently not evolving into pathology. These observations have been limited to the brain, but in animal models of tauopathies, PP-Tau accumulation also appears to occur in the spinal cord (SpCo). The aim of the present work was to assess whether ST leads to PP-Tau accumulation in the SpCo and whether this process is reversible. Immunofluorescence (IF) for AT8 (to assess PP-Tau) and Tau-1 (non-phosphorylated Tau) was carried out on SpCo coronal sections. AT8-IF was clearly expressed in the dorsal horns (DH) during ST, while in the ventral horns (VH) no staining was observed. The AT8-IF completely disappeared after 6 h from the return to euthermia. Tau-1-IF disappeared in both DH and VH during ST, returning to normal levels during recovery. To shed light on the cellular process underlying the PP-Tau pattern observed, the inhibited form of the glycogen-synthase kinase 3β (the main kinase acting on Tau) was assessed using IF: VH (i.e., in motor neurons) were highly stained mainly during ST, while in DH there was no staining. Since tauopathies are also related to neuroinflammation, microglia activation was also assessed through morphometric analyses, but no ST-induced microglia activation was found in the SpCo. Taken together, the present results show that, in the DH of SpCo, ST induces a reversible accumulation of PP-Tau. Since during ST there is no motor activity, the lack of AT8-IF in VH may result from an activity-related process at a cellular level. Thus, ST demonstrates a newly-described physiological mechanism that is able to resolve the accumulation of PP-Tau and apparently avoid the neurodegenerative outcome.
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spelling pubmed-78844662021-02-17 Reversible Tau Phosphorylation Induced by Synthetic Torpor in the Spinal Cord of the Rat Hitrec, Timna Squarcio, Fabio Cerri, Matteo Martelli, Davide Occhinegro, Alessandra Piscitiello, Emiliana Tupone, Domenico Amici, Roberto Luppi, Marco Front Neuroanat Neuroscience Tau is a key protein in neurons, where it affects the dynamics of the microtubule system. The hyperphosphorylation of Tau (PP-Tau) commonly leads to the formation of neurofibrillary tangles, as it occurs in tauopathies, a group of neurodegenerative diseases, including Alzheimer's. Hypothermia-related accumulation of PP-Tau has been described in hibernators and during synthetic torpor (ST), a torpor-like condition that has been induced in rats, a non-hibernating species. Remarkably, in ST PP-Tau is reversible and Tau de-phosphorylates within a few hours following the torpor bout, apparently not evolving into pathology. These observations have been limited to the brain, but in animal models of tauopathies, PP-Tau accumulation also appears to occur in the spinal cord (SpCo). The aim of the present work was to assess whether ST leads to PP-Tau accumulation in the SpCo and whether this process is reversible. Immunofluorescence (IF) for AT8 (to assess PP-Tau) and Tau-1 (non-phosphorylated Tau) was carried out on SpCo coronal sections. AT8-IF was clearly expressed in the dorsal horns (DH) during ST, while in the ventral horns (VH) no staining was observed. The AT8-IF completely disappeared after 6 h from the return to euthermia. Tau-1-IF disappeared in both DH and VH during ST, returning to normal levels during recovery. To shed light on the cellular process underlying the PP-Tau pattern observed, the inhibited form of the glycogen-synthase kinase 3β (the main kinase acting on Tau) was assessed using IF: VH (i.e., in motor neurons) were highly stained mainly during ST, while in DH there was no staining. Since tauopathies are also related to neuroinflammation, microglia activation was also assessed through morphometric analyses, but no ST-induced microglia activation was found in the SpCo. Taken together, the present results show that, in the DH of SpCo, ST induces a reversible accumulation of PP-Tau. Since during ST there is no motor activity, the lack of AT8-IF in VH may result from an activity-related process at a cellular level. Thus, ST demonstrates a newly-described physiological mechanism that is able to resolve the accumulation of PP-Tau and apparently avoid the neurodegenerative outcome. Frontiers Media S.A. 2021-02-02 /pmc/articles/PMC7884466/ /pubmed/33603651 http://dx.doi.org/10.3389/fnana.2021.592288 Text en Copyright © 2021 Hitrec, Squarcio, Cerri, Martelli, Occhinegro, Piscitiello, Tupone, Amici and Luppi. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Neuroscience
Hitrec, Timna
Squarcio, Fabio
Cerri, Matteo
Martelli, Davide
Occhinegro, Alessandra
Piscitiello, Emiliana
Tupone, Domenico
Amici, Roberto
Luppi, Marco
Reversible Tau Phosphorylation Induced by Synthetic Torpor in the Spinal Cord of the Rat
title Reversible Tau Phosphorylation Induced by Synthetic Torpor in the Spinal Cord of the Rat
title_full Reversible Tau Phosphorylation Induced by Synthetic Torpor in the Spinal Cord of the Rat
title_fullStr Reversible Tau Phosphorylation Induced by Synthetic Torpor in the Spinal Cord of the Rat
title_full_unstemmed Reversible Tau Phosphorylation Induced by Synthetic Torpor in the Spinal Cord of the Rat
title_short Reversible Tau Phosphorylation Induced by Synthetic Torpor in the Spinal Cord of the Rat
title_sort reversible tau phosphorylation induced by synthetic torpor in the spinal cord of the rat
topic Neuroscience
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7884466/
https://www.ncbi.nlm.nih.gov/pubmed/33603651
http://dx.doi.org/10.3389/fnana.2021.592288
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