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Decreasing pdzd8-mediated mito–ER contacts improves organismal fitness and mitigates Aβ(42) toxicity

Mitochondria-ER contact sites (MERCs) orchestrate many important cellular functions including regulating mitochondrial quality control through mitophagy and mediating mitochondrial calcium uptake. Here, we identify and functionally characterize the Drosophila ortholog of the recently identified mamm...

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Autores principales: Hewitt, Victoria L, Miller-Fleming, Leonor, Twyning, Madeleine J, Andreazza, Simonetta, Mattedi, Francesca, Prudent, Julien, Polleux, Franck, Vagnoni, Alessio, Whitworth, Alexander J
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Life Science Alliance LLC 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9279675/
https://www.ncbi.nlm.nih.gov/pubmed/35831024
http://dx.doi.org/10.26508/lsa.202201531
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author Hewitt, Victoria L
Miller-Fleming, Leonor
Twyning, Madeleine J
Andreazza, Simonetta
Mattedi, Francesca
Prudent, Julien
Polleux, Franck
Vagnoni, Alessio
Whitworth, Alexander J
author_facet Hewitt, Victoria L
Miller-Fleming, Leonor
Twyning, Madeleine J
Andreazza, Simonetta
Mattedi, Francesca
Prudent, Julien
Polleux, Franck
Vagnoni, Alessio
Whitworth, Alexander J
author_sort Hewitt, Victoria L
collection PubMed
description Mitochondria-ER contact sites (MERCs) orchestrate many important cellular functions including regulating mitochondrial quality control through mitophagy and mediating mitochondrial calcium uptake. Here, we identify and functionally characterize the Drosophila ortholog of the recently identified mammalian MERC protein, Pdzd8. We find that reducing pdzd8-mediated MERCs in neurons slows age-associated decline in locomotor activity and increases lifespan in Drosophila. The protective effects of pdzd8 knockdown in neurons correlate with an increase in mitophagy, suggesting that increased mitochondrial turnover may support healthy aging of neurons. In contrast, increasing MERCs by expressing a constitutive, synthetic ER–mitochondria tether disrupts mitochondrial transport and synapse formation, accelerates age-related decline in locomotion, and reduces lifespan. Although depletion of pdzd8 prolongs the survival of flies fed with mitochondrial toxins, it is also sufficient to rescue locomotor defects of a fly model of Alzheimer’s disease expressing Amyloid β(42) (Aβ(42)). Together, our results provide the first in vivo evidence that MERCs mediated by the tethering protein pdzd8 play a critical role in the regulation of mitochondrial quality control and neuronal homeostasis.
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spelling pubmed-92796752022-07-25 Decreasing pdzd8-mediated mito–ER contacts improves organismal fitness and mitigates Aβ(42) toxicity Hewitt, Victoria L Miller-Fleming, Leonor Twyning, Madeleine J Andreazza, Simonetta Mattedi, Francesca Prudent, Julien Polleux, Franck Vagnoni, Alessio Whitworth, Alexander J Life Sci Alliance Research Articles Mitochondria-ER contact sites (MERCs) orchestrate many important cellular functions including regulating mitochondrial quality control through mitophagy and mediating mitochondrial calcium uptake. Here, we identify and functionally characterize the Drosophila ortholog of the recently identified mammalian MERC protein, Pdzd8. We find that reducing pdzd8-mediated MERCs in neurons slows age-associated decline in locomotor activity and increases lifespan in Drosophila. The protective effects of pdzd8 knockdown in neurons correlate with an increase in mitophagy, suggesting that increased mitochondrial turnover may support healthy aging of neurons. In contrast, increasing MERCs by expressing a constitutive, synthetic ER–mitochondria tether disrupts mitochondrial transport and synapse formation, accelerates age-related decline in locomotion, and reduces lifespan. Although depletion of pdzd8 prolongs the survival of flies fed with mitochondrial toxins, it is also sufficient to rescue locomotor defects of a fly model of Alzheimer’s disease expressing Amyloid β(42) (Aβ(42)). Together, our results provide the first in vivo evidence that MERCs mediated by the tethering protein pdzd8 play a critical role in the regulation of mitochondrial quality control and neuronal homeostasis. Life Science Alliance LLC 2022-07-13 /pmc/articles/PMC9279675/ /pubmed/35831024 http://dx.doi.org/10.26508/lsa.202201531 Text en © 2022 Hewitt et al. https://creativecommons.org/licenses/by/4.0/This article is available under a Creative Commons License (Attribution 4.0 International, as described at https://creativecommons.org/licenses/by/4.0/).
spellingShingle Research Articles
Hewitt, Victoria L
Miller-Fleming, Leonor
Twyning, Madeleine J
Andreazza, Simonetta
Mattedi, Francesca
Prudent, Julien
Polleux, Franck
Vagnoni, Alessio
Whitworth, Alexander J
Decreasing pdzd8-mediated mito–ER contacts improves organismal fitness and mitigates Aβ(42) toxicity
title Decreasing pdzd8-mediated mito–ER contacts improves organismal fitness and mitigates Aβ(42) toxicity
title_full Decreasing pdzd8-mediated mito–ER contacts improves organismal fitness and mitigates Aβ(42) toxicity
title_fullStr Decreasing pdzd8-mediated mito–ER contacts improves organismal fitness and mitigates Aβ(42) toxicity
title_full_unstemmed Decreasing pdzd8-mediated mito–ER contacts improves organismal fitness and mitigates Aβ(42) toxicity
title_short Decreasing pdzd8-mediated mito–ER contacts improves organismal fitness and mitigates Aβ(42) toxicity
title_sort decreasing pdzd8-mediated mito–er contacts improves organismal fitness and mitigates aβ(42) toxicity
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9279675/
https://www.ncbi.nlm.nih.gov/pubmed/35831024
http://dx.doi.org/10.26508/lsa.202201531
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