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Glutamine Synthetase 1 Increases Autophagy Lysosomal Degradation of Mutant Huntingtin Aggregates in Neurons, Ameliorating Motility in a Drosophila Model for Huntington’s Disease
Glutamine Synthetase 1 (GS1) is a key enzyme that catalyzes the ATP-dependent synthesis of l-glutamine from l-glutamate and is also member of the Glutamate Glutamine Cycle, a complex physiological process between glia and neurons that controls glutamate homeostasis and is often found compromised in...
Autores principales: | , , , , , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
MDPI
2020
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7016901/ https://www.ncbi.nlm.nih.gov/pubmed/31941072 http://dx.doi.org/10.3390/cells9010196 |
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author | Vernizzi, Luisa Paiardi, Chiara Licata, Giusimaria Vitali, Teresa Santarelli, Stefania Raneli, Martino Manelli, Vera Rizzetto, Manuela Gioria, Mariarosa Pasini, Maria E. Grifoni, Daniela Vanoni, Maria A. Gellera, Cinzia Taroni, Franco Bellosta, Paola |
author_facet | Vernizzi, Luisa Paiardi, Chiara Licata, Giusimaria Vitali, Teresa Santarelli, Stefania Raneli, Martino Manelli, Vera Rizzetto, Manuela Gioria, Mariarosa Pasini, Maria E. Grifoni, Daniela Vanoni, Maria A. Gellera, Cinzia Taroni, Franco Bellosta, Paola |
author_sort | Vernizzi, Luisa |
collection | PubMed |
description | Glutamine Synthetase 1 (GS1) is a key enzyme that catalyzes the ATP-dependent synthesis of l-glutamine from l-glutamate and is also member of the Glutamate Glutamine Cycle, a complex physiological process between glia and neurons that controls glutamate homeostasis and is often found compromised in neurodegenerative diseases including Huntington’s disease (HD). Here we report that the expression of GS1 in neurons ameliorates the motility defects induced by the expression of the mutant Htt, using a Drosophila model for HD. This phenotype is associated with the ability of GS1 to favor the autophagy that we associate with the presence of reduced Htt toxic protein aggregates in neurons expressing mutant Htt. Expression of GS1 prevents the TOR activation and phosphorylation of S6K, a mechanism that we associate with the reduced levels of essential amino acids, particularly of arginine and asparagine important for TOR activation. This study reveals a novel function for GS1 to ameliorate neuronal survival by changing amino acids’ levels that induce a “starvation-like” condition responsible to induce autophagy. The identification of novel targets that inhibit TOR in neurons is of particular interest for the beneficial role that autophagy has in preserving physiological neuronal health and in the mechanisms that eliminate the formation of toxic aggregates in proteinopathies. |
format | Online Article Text |
id | pubmed-7016901 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2020 |
publisher | MDPI |
record_format | MEDLINE/PubMed |
spelling | pubmed-70169012020-02-28 Glutamine Synthetase 1 Increases Autophagy Lysosomal Degradation of Mutant Huntingtin Aggregates in Neurons, Ameliorating Motility in a Drosophila Model for Huntington’s Disease Vernizzi, Luisa Paiardi, Chiara Licata, Giusimaria Vitali, Teresa Santarelli, Stefania Raneli, Martino Manelli, Vera Rizzetto, Manuela Gioria, Mariarosa Pasini, Maria E. Grifoni, Daniela Vanoni, Maria A. Gellera, Cinzia Taroni, Franco Bellosta, Paola Cells Article Glutamine Synthetase 1 (GS1) is a key enzyme that catalyzes the ATP-dependent synthesis of l-glutamine from l-glutamate and is also member of the Glutamate Glutamine Cycle, a complex physiological process between glia and neurons that controls glutamate homeostasis and is often found compromised in neurodegenerative diseases including Huntington’s disease (HD). Here we report that the expression of GS1 in neurons ameliorates the motility defects induced by the expression of the mutant Htt, using a Drosophila model for HD. This phenotype is associated with the ability of GS1 to favor the autophagy that we associate with the presence of reduced Htt toxic protein aggregates in neurons expressing mutant Htt. Expression of GS1 prevents the TOR activation and phosphorylation of S6K, a mechanism that we associate with the reduced levels of essential amino acids, particularly of arginine and asparagine important for TOR activation. This study reveals a novel function for GS1 to ameliorate neuronal survival by changing amino acids’ levels that induce a “starvation-like” condition responsible to induce autophagy. The identification of novel targets that inhibit TOR in neurons is of particular interest for the beneficial role that autophagy has in preserving physiological neuronal health and in the mechanisms that eliminate the formation of toxic aggregates in proteinopathies. MDPI 2020-01-13 /pmc/articles/PMC7016901/ /pubmed/31941072 http://dx.doi.org/10.3390/cells9010196 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/). |
spellingShingle | Article Vernizzi, Luisa Paiardi, Chiara Licata, Giusimaria Vitali, Teresa Santarelli, Stefania Raneli, Martino Manelli, Vera Rizzetto, Manuela Gioria, Mariarosa Pasini, Maria E. Grifoni, Daniela Vanoni, Maria A. Gellera, Cinzia Taroni, Franco Bellosta, Paola Glutamine Synthetase 1 Increases Autophagy Lysosomal Degradation of Mutant Huntingtin Aggregates in Neurons, Ameliorating Motility in a Drosophila Model for Huntington’s Disease |
title | Glutamine Synthetase 1 Increases Autophagy Lysosomal Degradation of Mutant Huntingtin Aggregates in Neurons, Ameliorating Motility in a Drosophila Model for Huntington’s Disease |
title_full | Glutamine Synthetase 1 Increases Autophagy Lysosomal Degradation of Mutant Huntingtin Aggregates in Neurons, Ameliorating Motility in a Drosophila Model for Huntington’s Disease |
title_fullStr | Glutamine Synthetase 1 Increases Autophagy Lysosomal Degradation of Mutant Huntingtin Aggregates in Neurons, Ameliorating Motility in a Drosophila Model for Huntington’s Disease |
title_full_unstemmed | Glutamine Synthetase 1 Increases Autophagy Lysosomal Degradation of Mutant Huntingtin Aggregates in Neurons, Ameliorating Motility in a Drosophila Model for Huntington’s Disease |
title_short | Glutamine Synthetase 1 Increases Autophagy Lysosomal Degradation of Mutant Huntingtin Aggregates in Neurons, Ameliorating Motility in a Drosophila Model for Huntington’s Disease |
title_sort | glutamine synthetase 1 increases autophagy lysosomal degradation of mutant huntingtin aggregates in neurons, ameliorating motility in a drosophila model for huntington’s disease |
topic | Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7016901/ https://www.ncbi.nlm.nih.gov/pubmed/31941072 http://dx.doi.org/10.3390/cells9010196 |
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