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The NAD(+) precursor NMN activates dSarm to trigger axon degeneration in Drosophila

Axon degeneration contributes to the disruption of neuronal circuit function in diseased and injured nervous systems. Severed axons degenerate following the activation of an evolutionarily conserved signaling pathway, which culminates in the activation of SARM1 in mammals to execute the pathological...

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Autores principales: Llobet Rosell, Arnau, Paglione, Maria, Gilley, Jonathan, Kocia, Magdalena, Perillo, Giulia, Gasparrini, Massimiliano, Cialabrini, Lucia, Raffaelli, Nadia, Angeletti, Carlo, Orsomando, Giuseppe, Wu, Pei-Hsuan, Coleman, Michael P, Loreto, Andrea, Neukomm, Lukas Jakob
Formato: Online Artículo Texto
Lenguaje:English
Publicado: eLife Sciences Publications, Ltd 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9788811/
https://www.ncbi.nlm.nih.gov/pubmed/36476387
http://dx.doi.org/10.7554/eLife.80245
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author Llobet Rosell, Arnau
Paglione, Maria
Gilley, Jonathan
Kocia, Magdalena
Perillo, Giulia
Gasparrini, Massimiliano
Cialabrini, Lucia
Raffaelli, Nadia
Angeletti, Carlo
Orsomando, Giuseppe
Wu, Pei-Hsuan
Coleman, Michael P
Loreto, Andrea
Neukomm, Lukas Jakob
author_facet Llobet Rosell, Arnau
Paglione, Maria
Gilley, Jonathan
Kocia, Magdalena
Perillo, Giulia
Gasparrini, Massimiliano
Cialabrini, Lucia
Raffaelli, Nadia
Angeletti, Carlo
Orsomando, Giuseppe
Wu, Pei-Hsuan
Coleman, Michael P
Loreto, Andrea
Neukomm, Lukas Jakob
author_sort Llobet Rosell, Arnau
collection PubMed
description Axon degeneration contributes to the disruption of neuronal circuit function in diseased and injured nervous systems. Severed axons degenerate following the activation of an evolutionarily conserved signaling pathway, which culminates in the activation of SARM1 in mammals to execute the pathological depletion of the metabolite NAD(+). SARM1 NADase activity is activated by the NAD(+) precursor nicotinamide mononucleotide (NMN). In mammals, keeping NMN levels low potently preserves axons after injury. However, it remains unclear whether NMN is also a key mediator of axon degeneration and dSarm activation in flies. Here, we demonstrate that lowering NMN levels in Drosophila through the expression of a newly generated prokaryotic NMN-Deamidase (NMN-D) preserves severed axons for months and keeps them circuit-integrated for weeks. NMN-D alters the NAD(+) metabolic flux by lowering NMN, while NAD(+) remains unchanged in vivo. Increased NMN synthesis by the expression of mouse nicotinamide phosphoribosyltransferase (mNAMPT) leads to faster axon degeneration after injury. We also show that NMN-induced activation of dSarm mediates axon degeneration in vivo. Finally, NMN-D delays neurodegeneration caused by loss of the sole NMN-consuming and NAD(+)-synthesizing enzyme dNmnat. Our results reveal a critical role for NMN in neurodegeneration in the fly, which extends beyond axonal injury. The potent neuroprotection by reducing NMN levels is similar to the interference with other essential mediators of axon degeneration in Drosophila.
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spelling pubmed-97888112022-12-24 The NAD(+) precursor NMN activates dSarm to trigger axon degeneration in Drosophila Llobet Rosell, Arnau Paglione, Maria Gilley, Jonathan Kocia, Magdalena Perillo, Giulia Gasparrini, Massimiliano Cialabrini, Lucia Raffaelli, Nadia Angeletti, Carlo Orsomando, Giuseppe Wu, Pei-Hsuan Coleman, Michael P Loreto, Andrea Neukomm, Lukas Jakob eLife Cell Biology Axon degeneration contributes to the disruption of neuronal circuit function in diseased and injured nervous systems. Severed axons degenerate following the activation of an evolutionarily conserved signaling pathway, which culminates in the activation of SARM1 in mammals to execute the pathological depletion of the metabolite NAD(+). SARM1 NADase activity is activated by the NAD(+) precursor nicotinamide mononucleotide (NMN). In mammals, keeping NMN levels low potently preserves axons after injury. However, it remains unclear whether NMN is also a key mediator of axon degeneration and dSarm activation in flies. Here, we demonstrate that lowering NMN levels in Drosophila through the expression of a newly generated prokaryotic NMN-Deamidase (NMN-D) preserves severed axons for months and keeps them circuit-integrated for weeks. NMN-D alters the NAD(+) metabolic flux by lowering NMN, while NAD(+) remains unchanged in vivo. Increased NMN synthesis by the expression of mouse nicotinamide phosphoribosyltransferase (mNAMPT) leads to faster axon degeneration after injury. We also show that NMN-induced activation of dSarm mediates axon degeneration in vivo. Finally, NMN-D delays neurodegeneration caused by loss of the sole NMN-consuming and NAD(+)-synthesizing enzyme dNmnat. Our results reveal a critical role for NMN in neurodegeneration in the fly, which extends beyond axonal injury. The potent neuroprotection by reducing NMN levels is similar to the interference with other essential mediators of axon degeneration in Drosophila. eLife Sciences Publications, Ltd 2022-12-23 /pmc/articles/PMC9788811/ /pubmed/36476387 http://dx.doi.org/10.7554/eLife.80245 Text en © 2022, Llobet Rosell et al https://creativecommons.org/licenses/by/4.0/This article is distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use and redistribution provided that the original author and source are credited.
spellingShingle Cell Biology
Llobet Rosell, Arnau
Paglione, Maria
Gilley, Jonathan
Kocia, Magdalena
Perillo, Giulia
Gasparrini, Massimiliano
Cialabrini, Lucia
Raffaelli, Nadia
Angeletti, Carlo
Orsomando, Giuseppe
Wu, Pei-Hsuan
Coleman, Michael P
Loreto, Andrea
Neukomm, Lukas Jakob
The NAD(+) precursor NMN activates dSarm to trigger axon degeneration in Drosophila
title The NAD(+) precursor NMN activates dSarm to trigger axon degeneration in Drosophila
title_full The NAD(+) precursor NMN activates dSarm to trigger axon degeneration in Drosophila
title_fullStr The NAD(+) precursor NMN activates dSarm to trigger axon degeneration in Drosophila
title_full_unstemmed The NAD(+) precursor NMN activates dSarm to trigger axon degeneration in Drosophila
title_short The NAD(+) precursor NMN activates dSarm to trigger axon degeneration in Drosophila
title_sort nad(+) precursor nmn activates dsarm to trigger axon degeneration in drosophila
topic Cell Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9788811/
https://www.ncbi.nlm.nih.gov/pubmed/36476387
http://dx.doi.org/10.7554/eLife.80245
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