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Reduction of Spermine Synthase Suppresses Tau Accumulation Through Autophagy Modulation in Tauopathy

Tauopathy, including Alzheimer Disease (AD), is characterized by Tau protein accumulation and autophagy dysregulation. Emerging evidence connects polyamine metabolism with the autophagy pathway, however the role of polyamines in Tauopathy remains unclear. In the present study we investigated the rol...

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Autores principales: Tao, Xianzun, Liu, Jiaqi, Diaz-Perez, Zoraida, Foley, Jackson R, Stewart, Tracy Murray, Casero, Robert A, Zhai, R. Grace
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cold Spring Harbor Laboratory 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10055309/
https://www.ncbi.nlm.nih.gov/pubmed/36993333
http://dx.doi.org/10.1101/2023.03.17.533015
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author Tao, Xianzun
Liu, Jiaqi
Diaz-Perez, Zoraida
Foley, Jackson R
Stewart, Tracy Murray
Casero, Robert A
Zhai, R. Grace
author_facet Tao, Xianzun
Liu, Jiaqi
Diaz-Perez, Zoraida
Foley, Jackson R
Stewart, Tracy Murray
Casero, Robert A
Zhai, R. Grace
author_sort Tao, Xianzun
collection PubMed
description Tauopathy, including Alzheimer Disease (AD), is characterized by Tau protein accumulation and autophagy dysregulation. Emerging evidence connects polyamine metabolism with the autophagy pathway, however the role of polyamines in Tauopathy remains unclear. In the present study we investigated the role of spermine synthase (SMS) in autophagy regulation and tau protein processing in Drosophila and human cellular models of Tauopathy. Our previous study showed that Drosophila spermine synthase (dSms) deficiency impairs lysosomal function and blocks autophagy flux. Interestingly, partial loss-of-function of SMS in heterozygous dSms flies extends lifespan and improves the climbing performance of flies with human Tau (hTau) overexpression. Mechanistic analysis showed that heterozygous loss-of-function mutation of dSms reduces hTau protein accumulation through enhancing autophagic flux. Measurement of polyamine levels detected a mild elevation of spermidine in flies with heterozygous loss of dSms. SMS knock-down in human neuronal or glial cells also upregulates autophagic flux and reduces Tau protein accumulation. Proteomics analysis of postmortem brain tissue from AD patients showed a significant albeit modest elevation of SMS protein level in AD-relevant brain regions compared to that of control brains consistently across several datasets. Taken together, our study uncovers a correlation between SMS protein level and AD pathogenesis and reveals that SMS reduction upregulates autophagy, promotes Tau clearance, and reduces Tau protein accumulation. These findings provide a new potential therapeutic target of Tauopathy.
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spelling pubmed-100553092023-03-30 Reduction of Spermine Synthase Suppresses Tau Accumulation Through Autophagy Modulation in Tauopathy Tao, Xianzun Liu, Jiaqi Diaz-Perez, Zoraida Foley, Jackson R Stewart, Tracy Murray Casero, Robert A Zhai, R. Grace bioRxiv Article Tauopathy, including Alzheimer Disease (AD), is characterized by Tau protein accumulation and autophagy dysregulation. Emerging evidence connects polyamine metabolism with the autophagy pathway, however the role of polyamines in Tauopathy remains unclear. In the present study we investigated the role of spermine synthase (SMS) in autophagy regulation and tau protein processing in Drosophila and human cellular models of Tauopathy. Our previous study showed that Drosophila spermine synthase (dSms) deficiency impairs lysosomal function and blocks autophagy flux. Interestingly, partial loss-of-function of SMS in heterozygous dSms flies extends lifespan and improves the climbing performance of flies with human Tau (hTau) overexpression. Mechanistic analysis showed that heterozygous loss-of-function mutation of dSms reduces hTau protein accumulation through enhancing autophagic flux. Measurement of polyamine levels detected a mild elevation of spermidine in flies with heterozygous loss of dSms. SMS knock-down in human neuronal or glial cells also upregulates autophagic flux and reduces Tau protein accumulation. Proteomics analysis of postmortem brain tissue from AD patients showed a significant albeit modest elevation of SMS protein level in AD-relevant brain regions compared to that of control brains consistently across several datasets. Taken together, our study uncovers a correlation between SMS protein level and AD pathogenesis and reveals that SMS reduction upregulates autophagy, promotes Tau clearance, and reduces Tau protein accumulation. These findings provide a new potential therapeutic target of Tauopathy. Cold Spring Harbor Laboratory 2023-03-18 /pmc/articles/PMC10055309/ /pubmed/36993333 http://dx.doi.org/10.1101/2023.03.17.533015 Text en https://creativecommons.org/licenses/by-nc-nd/4.0/This work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License (https://creativecommons.org/licenses/by-nc-nd/4.0/) , which allows reusers to copy and distribute the material in any medium or format in unadapted form only, for noncommercial purposes only, and only so long as attribution is given to the creator.
spellingShingle Article
Tao, Xianzun
Liu, Jiaqi
Diaz-Perez, Zoraida
Foley, Jackson R
Stewart, Tracy Murray
Casero, Robert A
Zhai, R. Grace
Reduction of Spermine Synthase Suppresses Tau Accumulation Through Autophagy Modulation in Tauopathy
title Reduction of Spermine Synthase Suppresses Tau Accumulation Through Autophagy Modulation in Tauopathy
title_full Reduction of Spermine Synthase Suppresses Tau Accumulation Through Autophagy Modulation in Tauopathy
title_fullStr Reduction of Spermine Synthase Suppresses Tau Accumulation Through Autophagy Modulation in Tauopathy
title_full_unstemmed Reduction of Spermine Synthase Suppresses Tau Accumulation Through Autophagy Modulation in Tauopathy
title_short Reduction of Spermine Synthase Suppresses Tau Accumulation Through Autophagy Modulation in Tauopathy
title_sort reduction of spermine synthase suppresses tau accumulation through autophagy modulation in tauopathy
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10055309/
https://www.ncbi.nlm.nih.gov/pubmed/36993333
http://dx.doi.org/10.1101/2023.03.17.533015
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