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Ceramides And Stress Signalling Intersect With Autophagic Defects In Neurodegenerative Drosophila blue cheese (bchs) Mutants

Sphingolipid metabolites are involved in the regulation of autophagy, a degradative recycling process that is required to prevent neuronal degeneration. Drosophila blue cheese mutants neurodegenerate due to perturbations in autophagic flux, and consequent accumulation of ubiquitinated aggregates. He...

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Autores principales: Hebbar, Sarita, Sahoo, Ishtapran, Matysik, Artur, Argudo Garcia, Irene, Osborne, Kathleen Amy, Papan, Cyrus, Torta, Federico, Narayanaswamy, Pradeep, Fun, Xiu Hui, Wenk, Markus R, Shevchenko, Andrej, Schwudke, Dominik, Kraut, Rachel
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4671070/
https://www.ncbi.nlm.nih.gov/pubmed/26639035
http://dx.doi.org/10.1038/srep15926
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author Hebbar, Sarita
Sahoo, Ishtapran
Matysik, Artur
Argudo Garcia, Irene
Osborne, Kathleen Amy
Papan, Cyrus
Torta, Federico
Narayanaswamy, Pradeep
Fun, Xiu Hui
Wenk, Markus R
Shevchenko, Andrej
Schwudke, Dominik
Kraut, Rachel
author_facet Hebbar, Sarita
Sahoo, Ishtapran
Matysik, Artur
Argudo Garcia, Irene
Osborne, Kathleen Amy
Papan, Cyrus
Torta, Federico
Narayanaswamy, Pradeep
Fun, Xiu Hui
Wenk, Markus R
Shevchenko, Andrej
Schwudke, Dominik
Kraut, Rachel
author_sort Hebbar, Sarita
collection PubMed
description Sphingolipid metabolites are involved in the regulation of autophagy, a degradative recycling process that is required to prevent neuronal degeneration. Drosophila blue cheese mutants neurodegenerate due to perturbations in autophagic flux, and consequent accumulation of ubiquitinated aggregates. Here, we demonstrate that blue cheese mutant brains exhibit an elevation in total ceramide levels; surprisingly, however, degeneration is ameliorated when the pool of available ceramides is further increased, and exacerbated when ceramide levels are decreased by altering sphingolipid catabolism or blocking de novo synthesis. Exogenous ceramide is seen to accumulate in autophagosomes, which are fewer in number and show less efficient clearance in blue cheese mutant neurons. Sphingolipid metabolism is also shifted away from salvage toward de novo pathways, while pro-growth Akt and MAP pathways are down-regulated, and ER stress is increased. All these defects are reversed under genetic rescue conditions that increase ceramide generation from salvage pathways. This constellation of effects suggests a possible mechanism whereby the observed deficit in a potentially ceramide-releasing autophagic pathway impedes survival signaling and exacerbates neuronal death.
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spelling pubmed-46710702015-12-11 Ceramides And Stress Signalling Intersect With Autophagic Defects In Neurodegenerative Drosophila blue cheese (bchs) Mutants Hebbar, Sarita Sahoo, Ishtapran Matysik, Artur Argudo Garcia, Irene Osborne, Kathleen Amy Papan, Cyrus Torta, Federico Narayanaswamy, Pradeep Fun, Xiu Hui Wenk, Markus R Shevchenko, Andrej Schwudke, Dominik Kraut, Rachel Sci Rep Article Sphingolipid metabolites are involved in the regulation of autophagy, a degradative recycling process that is required to prevent neuronal degeneration. Drosophila blue cheese mutants neurodegenerate due to perturbations in autophagic flux, and consequent accumulation of ubiquitinated aggregates. Here, we demonstrate that blue cheese mutant brains exhibit an elevation in total ceramide levels; surprisingly, however, degeneration is ameliorated when the pool of available ceramides is further increased, and exacerbated when ceramide levels are decreased by altering sphingolipid catabolism or blocking de novo synthesis. Exogenous ceramide is seen to accumulate in autophagosomes, which are fewer in number and show less efficient clearance in blue cheese mutant neurons. Sphingolipid metabolism is also shifted away from salvage toward de novo pathways, while pro-growth Akt and MAP pathways are down-regulated, and ER stress is increased. All these defects are reversed under genetic rescue conditions that increase ceramide generation from salvage pathways. This constellation of effects suggests a possible mechanism whereby the observed deficit in a potentially ceramide-releasing autophagic pathway impedes survival signaling and exacerbates neuronal death. Nature Publishing Group 2015-12-07 /pmc/articles/PMC4671070/ /pubmed/26639035 http://dx.doi.org/10.1038/srep15926 Text en Copyright © 2015, Macmillan Publishers Limited http://creativecommons.org/licenses/by/4.0/ This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Article
Hebbar, Sarita
Sahoo, Ishtapran
Matysik, Artur
Argudo Garcia, Irene
Osborne, Kathleen Amy
Papan, Cyrus
Torta, Federico
Narayanaswamy, Pradeep
Fun, Xiu Hui
Wenk, Markus R
Shevchenko, Andrej
Schwudke, Dominik
Kraut, Rachel
Ceramides And Stress Signalling Intersect With Autophagic Defects In Neurodegenerative Drosophila blue cheese (bchs) Mutants
title Ceramides And Stress Signalling Intersect With Autophagic Defects In Neurodegenerative Drosophila blue cheese (bchs) Mutants
title_full Ceramides And Stress Signalling Intersect With Autophagic Defects In Neurodegenerative Drosophila blue cheese (bchs) Mutants
title_fullStr Ceramides And Stress Signalling Intersect With Autophagic Defects In Neurodegenerative Drosophila blue cheese (bchs) Mutants
title_full_unstemmed Ceramides And Stress Signalling Intersect With Autophagic Defects In Neurodegenerative Drosophila blue cheese (bchs) Mutants
title_short Ceramides And Stress Signalling Intersect With Autophagic Defects In Neurodegenerative Drosophila blue cheese (bchs) Mutants
title_sort ceramides and stress signalling intersect with autophagic defects in neurodegenerative drosophila blue cheese (bchs) mutants
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4671070/
https://www.ncbi.nlm.nih.gov/pubmed/26639035
http://dx.doi.org/10.1038/srep15926
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