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VCP/p97 cofactor UBXN1/SAKS1 regulates mitophagy by modulating MFN2 removal from mitochondria

Initiation of PINK1- and PRKN-dependent mitophagy is a highly regulated process involving the activity of the AAA-ATPase VCP/p97, a cofactor-guided multifunctional protein central to handling ubiquitinated client proteins. Removal of ubiquitinated substrates such as the mitofusin MFN2 from the outer...

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Autores principales: Mengus, Chantal, Neutzner, Melanie, Bento, Ana Catarina Pinho Ferreira, Bippes, Claudia C., Kohler, Corina, Decembrini, Sarah, Häusel, Jessica, Hemion, Charles, Sironi, Lara, Frank, Stephan, Scholl, Hendrik P. N., Neutzner, Albert
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Taylor & Francis 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8865314/
https://www.ncbi.nlm.nih.gov/pubmed/33966597
http://dx.doi.org/10.1080/15548627.2021.1922982
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author Mengus, Chantal
Neutzner, Melanie
Bento, Ana Catarina Pinho Ferreira
Bippes, Claudia C.
Kohler, Corina
Decembrini, Sarah
Häusel, Jessica
Hemion, Charles
Sironi, Lara
Frank, Stephan
Scholl, Hendrik P. N.
Neutzner, Albert
author_facet Mengus, Chantal
Neutzner, Melanie
Bento, Ana Catarina Pinho Ferreira
Bippes, Claudia C.
Kohler, Corina
Decembrini, Sarah
Häusel, Jessica
Hemion, Charles
Sironi, Lara
Frank, Stephan
Scholl, Hendrik P. N.
Neutzner, Albert
author_sort Mengus, Chantal
collection PubMed
description Initiation of PINK1- and PRKN-dependent mitophagy is a highly regulated process involving the activity of the AAA-ATPase VCP/p97, a cofactor-guided multifunctional protein central to handling ubiquitinated client proteins. Removal of ubiquitinated substrates such as the mitofusin MFN2 from the outer mitochondrial membrane by VCP is critical for PRKN accumulation on mitochondria, which drives mitophagy. Here we characterize the role of the UBA and UBX-domain containing VCP cofactor UBXN1/SAKS1 during mitophagy. Following mitochondrial depolarization and depending on PRKN, UBXN1 translocated alongside VCP to mitochondria. Prior to mitophagy, loss of UBXN1 led to mitochondrial fragmentation, diminished ATP production, and impaired ER-mitochondrial apposition. When mitophagy was induced in cells lacking UBXN1, mitochondrial translocation of VCP and PRKN was impaired, diminishing mitophagic flux. In addition, UBXN1 physically interacted with PRKN in a UBX-domain depending manner. Interestingly, ectopic expression of the pro-mitophagic VCP cofactor UBXN6/UBXD1 fully reversed impaired PRKN recruitment in UBXN1(-/-) cells. Mechanistically, UBXN1 acted downstream of PINK1 by facilitating MFN2 removal from mitochondria. In UBXN1(-/-) cells exposed to mitochondrial stress, MFN2 formed para-mitochondrial blobs likely representing blocked intermediates of the MFN2 removal process partly reversible by expression of UBXN6. Presence of these MFN2 blobs strongly correlated with impaired PRKN translocation to depolarized mitochondria. Our observations connect the VCP cofactor UBXN1 to the initiation and maintenance phase of PRKN-dependent mitophagy, and indicate that, upon mitochondrial stress induction, MFN2 removal from mitochondria occurs through a specialized process.
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spelling pubmed-88653142022-02-24 VCP/p97 cofactor UBXN1/SAKS1 regulates mitophagy by modulating MFN2 removal from mitochondria Mengus, Chantal Neutzner, Melanie Bento, Ana Catarina Pinho Ferreira Bippes, Claudia C. Kohler, Corina Decembrini, Sarah Häusel, Jessica Hemion, Charles Sironi, Lara Frank, Stephan Scholl, Hendrik P. N. Neutzner, Albert Autophagy Research Paper Initiation of PINK1- and PRKN-dependent mitophagy is a highly regulated process involving the activity of the AAA-ATPase VCP/p97, a cofactor-guided multifunctional protein central to handling ubiquitinated client proteins. Removal of ubiquitinated substrates such as the mitofusin MFN2 from the outer mitochondrial membrane by VCP is critical for PRKN accumulation on mitochondria, which drives mitophagy. Here we characterize the role of the UBA and UBX-domain containing VCP cofactor UBXN1/SAKS1 during mitophagy. Following mitochondrial depolarization and depending on PRKN, UBXN1 translocated alongside VCP to mitochondria. Prior to mitophagy, loss of UBXN1 led to mitochondrial fragmentation, diminished ATP production, and impaired ER-mitochondrial apposition. When mitophagy was induced in cells lacking UBXN1, mitochondrial translocation of VCP and PRKN was impaired, diminishing mitophagic flux. In addition, UBXN1 physically interacted with PRKN in a UBX-domain depending manner. Interestingly, ectopic expression of the pro-mitophagic VCP cofactor UBXN6/UBXD1 fully reversed impaired PRKN recruitment in UBXN1(-/-) cells. Mechanistically, UBXN1 acted downstream of PINK1 by facilitating MFN2 removal from mitochondria. In UBXN1(-/-) cells exposed to mitochondrial stress, MFN2 formed para-mitochondrial blobs likely representing blocked intermediates of the MFN2 removal process partly reversible by expression of UBXN6. Presence of these MFN2 blobs strongly correlated with impaired PRKN translocation to depolarized mitochondria. Our observations connect the VCP cofactor UBXN1 to the initiation and maintenance phase of PRKN-dependent mitophagy, and indicate that, upon mitochondrial stress induction, MFN2 removal from mitochondria occurs through a specialized process. Taylor & Francis 2021-05-09 /pmc/articles/PMC8865314/ /pubmed/33966597 http://dx.doi.org/10.1080/15548627.2021.1922982 Text en © 2021 The Author(s). Published by Informa UK Limited, trading as Taylor & Francis Group. https://creativecommons.org/licenses/by-nc-nd/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution-NonCommercial-NoDerivatives License (http://creativecommons.org/licenses/by-nc-nd/4.0/ (https://creativecommons.org/licenses/by-nc-nd/4.0/) ), which permits non-commercial re-use, distribution, and reproduction in any medium, provided the original work is properly cited, and is not altered, transformed, or built upon in any way.
spellingShingle Research Paper
Mengus, Chantal
Neutzner, Melanie
Bento, Ana Catarina Pinho Ferreira
Bippes, Claudia C.
Kohler, Corina
Decembrini, Sarah
Häusel, Jessica
Hemion, Charles
Sironi, Lara
Frank, Stephan
Scholl, Hendrik P. N.
Neutzner, Albert
VCP/p97 cofactor UBXN1/SAKS1 regulates mitophagy by modulating MFN2 removal from mitochondria
title VCP/p97 cofactor UBXN1/SAKS1 regulates mitophagy by modulating MFN2 removal from mitochondria
title_full VCP/p97 cofactor UBXN1/SAKS1 regulates mitophagy by modulating MFN2 removal from mitochondria
title_fullStr VCP/p97 cofactor UBXN1/SAKS1 regulates mitophagy by modulating MFN2 removal from mitochondria
title_full_unstemmed VCP/p97 cofactor UBXN1/SAKS1 regulates mitophagy by modulating MFN2 removal from mitochondria
title_short VCP/p97 cofactor UBXN1/SAKS1 regulates mitophagy by modulating MFN2 removal from mitochondria
title_sort vcp/p97 cofactor ubxn1/saks1 regulates mitophagy by modulating mfn2 removal from mitochondria
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8865314/
https://www.ncbi.nlm.nih.gov/pubmed/33966597
http://dx.doi.org/10.1080/15548627.2021.1922982
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