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A new target for an old DUB: UCH-L1 regulates mitofusin-2 levels, altering mitochondrial morphology, function and calcium uptake

UCH-L1 is a deubiquitinating enzyme (DUB), highly abundant in neurons, with a sub-cellular localization dependent on its farnesylation state. Despite UCH-L1′s association with familial Parkinson's Disease (PD), the effects on mitochondrial bioenergetics and quality control remain unexplored. He...

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Autores principales: Cerqueira, Fernanda M., von Stockum, Sophia, Giacomello, Marta, Goliand, Inna, Kakimoto, Pamela, Marchesan, Elena, De Stefani, Diego, Kowaltowski, Alicia J., Ziviani, Elena, Shirihai, Orian S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7509235/
https://www.ncbi.nlm.nih.gov/pubmed/32956978
http://dx.doi.org/10.1016/j.redox.2020.101676
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author Cerqueira, Fernanda M.
von Stockum, Sophia
Giacomello, Marta
Goliand, Inna
Kakimoto, Pamela
Marchesan, Elena
De Stefani, Diego
Kowaltowski, Alicia J.
Ziviani, Elena
Shirihai, Orian S.
author_facet Cerqueira, Fernanda M.
von Stockum, Sophia
Giacomello, Marta
Goliand, Inna
Kakimoto, Pamela
Marchesan, Elena
De Stefani, Diego
Kowaltowski, Alicia J.
Ziviani, Elena
Shirihai, Orian S.
author_sort Cerqueira, Fernanda M.
collection PubMed
description UCH-L1 is a deubiquitinating enzyme (DUB), highly abundant in neurons, with a sub-cellular localization dependent on its farnesylation state. Despite UCH-L1′s association with familial Parkinson's Disease (PD), the effects on mitochondrial bioenergetics and quality control remain unexplored. Here we investigated the role of UCHL-1 in mitochondrial dynamics and bioenergetics. We demonstrate that knock-down (KD) of UCH-L1 in different cell lines reduces the levels of the mitochondrial fusion protein Mitofusin-2, but not Mitofusin-1, resulting in mitochondrial enlargement and disruption of the tubular network. This was associated with lower tethering between mitochondria and the endoplasmic reticulum, consequently altering mitochondrial calcium uptake. Respiratory function was also altered, as UCH-L1 KD cells displayed higher proton leak and maximum respiratory capacity. Conversely, overexpression of UCH-L1 increased Mfn2 levels, an effect dramatically enhanced by the mutation of the farnesylation site (C220S), which drives UCH-L1 binding to membranes. These data indicate that the soluble cytosolic form of UCH-L1 regulates Mitofusin-2 levels and mitochondrial function. These effects are biologically conserved, since knock-down of the corresponding UCH-L1 ortholog in D. melanogaster reduces levels of the mitofusin ortholog Marf and also increases mitochondrial respiratory capacity. We thus show that Mfn-2 levels are directly affected by UCH-L1, demonstrating that the mitochondrial roles of DUBs go beyond controlling mitophagy rates.
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spelling pubmed-75092352020-09-28 A new target for an old DUB: UCH-L1 regulates mitofusin-2 levels, altering mitochondrial morphology, function and calcium uptake Cerqueira, Fernanda M. von Stockum, Sophia Giacomello, Marta Goliand, Inna Kakimoto, Pamela Marchesan, Elena De Stefani, Diego Kowaltowski, Alicia J. Ziviani, Elena Shirihai, Orian S. Redox Biol Research Paper UCH-L1 is a deubiquitinating enzyme (DUB), highly abundant in neurons, with a sub-cellular localization dependent on its farnesylation state. Despite UCH-L1′s association with familial Parkinson's Disease (PD), the effects on mitochondrial bioenergetics and quality control remain unexplored. Here we investigated the role of UCHL-1 in mitochondrial dynamics and bioenergetics. We demonstrate that knock-down (KD) of UCH-L1 in different cell lines reduces the levels of the mitochondrial fusion protein Mitofusin-2, but not Mitofusin-1, resulting in mitochondrial enlargement and disruption of the tubular network. This was associated with lower tethering between mitochondria and the endoplasmic reticulum, consequently altering mitochondrial calcium uptake. Respiratory function was also altered, as UCH-L1 KD cells displayed higher proton leak and maximum respiratory capacity. Conversely, overexpression of UCH-L1 increased Mfn2 levels, an effect dramatically enhanced by the mutation of the farnesylation site (C220S), which drives UCH-L1 binding to membranes. These data indicate that the soluble cytosolic form of UCH-L1 regulates Mitofusin-2 levels and mitochondrial function. These effects are biologically conserved, since knock-down of the corresponding UCH-L1 ortholog in D. melanogaster reduces levels of the mitofusin ortholog Marf and also increases mitochondrial respiratory capacity. We thus show that Mfn-2 levels are directly affected by UCH-L1, demonstrating that the mitochondrial roles of DUBs go beyond controlling mitophagy rates. Elsevier 2020-08-07 /pmc/articles/PMC7509235/ /pubmed/32956978 http://dx.doi.org/10.1016/j.redox.2020.101676 Text en © 2020 Published by Elsevier B.V. http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research Paper
Cerqueira, Fernanda M.
von Stockum, Sophia
Giacomello, Marta
Goliand, Inna
Kakimoto, Pamela
Marchesan, Elena
De Stefani, Diego
Kowaltowski, Alicia J.
Ziviani, Elena
Shirihai, Orian S.
A new target for an old DUB: UCH-L1 regulates mitofusin-2 levels, altering mitochondrial morphology, function and calcium uptake
title A new target for an old DUB: UCH-L1 regulates mitofusin-2 levels, altering mitochondrial morphology, function and calcium uptake
title_full A new target for an old DUB: UCH-L1 regulates mitofusin-2 levels, altering mitochondrial morphology, function and calcium uptake
title_fullStr A new target for an old DUB: UCH-L1 regulates mitofusin-2 levels, altering mitochondrial morphology, function and calcium uptake
title_full_unstemmed A new target for an old DUB: UCH-L1 regulates mitofusin-2 levels, altering mitochondrial morphology, function and calcium uptake
title_short A new target for an old DUB: UCH-L1 regulates mitofusin-2 levels, altering mitochondrial morphology, function and calcium uptake
title_sort new target for an old dub: uch-l1 regulates mitofusin-2 levels, altering mitochondrial morphology, function and calcium uptake
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7509235/
https://www.ncbi.nlm.nih.gov/pubmed/32956978
http://dx.doi.org/10.1016/j.redox.2020.101676
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