Cargando…

The metabolite-controlled ubiquitin conjugase Ubc8 promotes mitochondrial protein import

Mitochondria play a key role in cellular energy metabolism. Transitions between glycolytic and respiratory conditions induce considerable adaptations of the cellular proteome. These metabolism-dependent changes are particularly pronounced for the protein composition of mitochondria. Here, we show th...

Descripción completa

Detalles Bibliográficos
Autores principales: Rödl, Saskia, den Brave, Fabian, Räschle, Markus, Kizmaz, Büsra, Lenhard, Svenja, Groh, Carina, Becker, Hanna, Zimmermann, Jannik, Morgan, Bruce, Richling, Elke, Becker, Thomas, Herrmann, Johannes M
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Life Science Alliance LLC 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9579816/
https://www.ncbi.nlm.nih.gov/pubmed/36253107
http://dx.doi.org/10.26508/lsa.202201526
_version_ 1784812265502932992
author Rödl, Saskia
den Brave, Fabian
Räschle, Markus
Kizmaz, Büsra
Lenhard, Svenja
Groh, Carina
Becker, Hanna
Zimmermann, Jannik
Morgan, Bruce
Richling, Elke
Becker, Thomas
Herrmann, Johannes M
author_facet Rödl, Saskia
den Brave, Fabian
Räschle, Markus
Kizmaz, Büsra
Lenhard, Svenja
Groh, Carina
Becker, Hanna
Zimmermann, Jannik
Morgan, Bruce
Richling, Elke
Becker, Thomas
Herrmann, Johannes M
author_sort Rödl, Saskia
collection PubMed
description Mitochondria play a key role in cellular energy metabolism. Transitions between glycolytic and respiratory conditions induce considerable adaptations of the cellular proteome. These metabolism-dependent changes are particularly pronounced for the protein composition of mitochondria. Here, we show that the yeast cytosolic ubiquitin conjugase Ubc8 plays a crucial role in the remodeling process when cells transition from respiratory to fermentative conditions. Ubc8 is a conserved and well-studied component of the catabolite control system that is known to regulate the stability of gluconeogenic enzymes. Unexpectedly, we found that Ubc8 also promotes the assembly of the translocase of the outer membrane of mitochondria (TOM) and increases the levels of its cytosol-exposed receptor subunit Tom22. Ubc8 deficiency results in compromised protein import into mitochondria and reduced steady-state levels of mitochondrial proteins. Our observations show that Ubc8, which is controlled by the prevailing metabolic conditions, promotes the switch from glucose synthesis to glucose usage in the cytosol and induces the biogenesis of the mitochondrial TOM machinery to improve mitochondrial protein import during phases of metabolic transition.
format Online
Article
Text
id pubmed-9579816
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher Life Science Alliance LLC
record_format MEDLINE/PubMed
spelling pubmed-95798162022-10-19 The metabolite-controlled ubiquitin conjugase Ubc8 promotes mitochondrial protein import Rödl, Saskia den Brave, Fabian Räschle, Markus Kizmaz, Büsra Lenhard, Svenja Groh, Carina Becker, Hanna Zimmermann, Jannik Morgan, Bruce Richling, Elke Becker, Thomas Herrmann, Johannes M Life Sci Alliance Research Articles Mitochondria play a key role in cellular energy metabolism. Transitions between glycolytic and respiratory conditions induce considerable adaptations of the cellular proteome. These metabolism-dependent changes are particularly pronounced for the protein composition of mitochondria. Here, we show that the yeast cytosolic ubiquitin conjugase Ubc8 plays a crucial role in the remodeling process when cells transition from respiratory to fermentative conditions. Ubc8 is a conserved and well-studied component of the catabolite control system that is known to regulate the stability of gluconeogenic enzymes. Unexpectedly, we found that Ubc8 also promotes the assembly of the translocase of the outer membrane of mitochondria (TOM) and increases the levels of its cytosol-exposed receptor subunit Tom22. Ubc8 deficiency results in compromised protein import into mitochondria and reduced steady-state levels of mitochondrial proteins. Our observations show that Ubc8, which is controlled by the prevailing metabolic conditions, promotes the switch from glucose synthesis to glucose usage in the cytosol and induces the biogenesis of the mitochondrial TOM machinery to improve mitochondrial protein import during phases of metabolic transition. Life Science Alliance LLC 2022-10-17 /pmc/articles/PMC9579816/ /pubmed/36253107 http://dx.doi.org/10.26508/lsa.202201526 Text en © 2022 Rödl 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
Rödl, Saskia
den Brave, Fabian
Räschle, Markus
Kizmaz, Büsra
Lenhard, Svenja
Groh, Carina
Becker, Hanna
Zimmermann, Jannik
Morgan, Bruce
Richling, Elke
Becker, Thomas
Herrmann, Johannes M
The metabolite-controlled ubiquitin conjugase Ubc8 promotes mitochondrial protein import
title The metabolite-controlled ubiquitin conjugase Ubc8 promotes mitochondrial protein import
title_full The metabolite-controlled ubiquitin conjugase Ubc8 promotes mitochondrial protein import
title_fullStr The metabolite-controlled ubiquitin conjugase Ubc8 promotes mitochondrial protein import
title_full_unstemmed The metabolite-controlled ubiquitin conjugase Ubc8 promotes mitochondrial protein import
title_short The metabolite-controlled ubiquitin conjugase Ubc8 promotes mitochondrial protein import
title_sort metabolite-controlled ubiquitin conjugase ubc8 promotes mitochondrial protein import
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9579816/
https://www.ncbi.nlm.nih.gov/pubmed/36253107
http://dx.doi.org/10.26508/lsa.202201526
work_keys_str_mv AT rodlsaskia themetabolitecontrolledubiquitinconjugaseubc8promotesmitochondrialproteinimport
AT denbravefabian themetabolitecontrolledubiquitinconjugaseubc8promotesmitochondrialproteinimport
AT raschlemarkus themetabolitecontrolledubiquitinconjugaseubc8promotesmitochondrialproteinimport
AT kizmazbusra themetabolitecontrolledubiquitinconjugaseubc8promotesmitochondrialproteinimport
AT lenhardsvenja themetabolitecontrolledubiquitinconjugaseubc8promotesmitochondrialproteinimport
AT grohcarina themetabolitecontrolledubiquitinconjugaseubc8promotesmitochondrialproteinimport
AT beckerhanna themetabolitecontrolledubiquitinconjugaseubc8promotesmitochondrialproteinimport
AT zimmermannjannik themetabolitecontrolledubiquitinconjugaseubc8promotesmitochondrialproteinimport
AT morganbruce themetabolitecontrolledubiquitinconjugaseubc8promotesmitochondrialproteinimport
AT richlingelke themetabolitecontrolledubiquitinconjugaseubc8promotesmitochondrialproteinimport
AT beckerthomas themetabolitecontrolledubiquitinconjugaseubc8promotesmitochondrialproteinimport
AT herrmannjohannesm themetabolitecontrolledubiquitinconjugaseubc8promotesmitochondrialproteinimport
AT rodlsaskia metabolitecontrolledubiquitinconjugaseubc8promotesmitochondrialproteinimport
AT denbravefabian metabolitecontrolledubiquitinconjugaseubc8promotesmitochondrialproteinimport
AT raschlemarkus metabolitecontrolledubiquitinconjugaseubc8promotesmitochondrialproteinimport
AT kizmazbusra metabolitecontrolledubiquitinconjugaseubc8promotesmitochondrialproteinimport
AT lenhardsvenja metabolitecontrolledubiquitinconjugaseubc8promotesmitochondrialproteinimport
AT grohcarina metabolitecontrolledubiquitinconjugaseubc8promotesmitochondrialproteinimport
AT beckerhanna metabolitecontrolledubiquitinconjugaseubc8promotesmitochondrialproteinimport
AT zimmermannjannik metabolitecontrolledubiquitinconjugaseubc8promotesmitochondrialproteinimport
AT morganbruce metabolitecontrolledubiquitinconjugaseubc8promotesmitochondrialproteinimport
AT richlingelke metabolitecontrolledubiquitinconjugaseubc8promotesmitochondrialproteinimport
AT beckerthomas metabolitecontrolledubiquitinconjugaseubc8promotesmitochondrialproteinimport
AT herrmannjohannesm metabolitecontrolledubiquitinconjugaseubc8promotesmitochondrialproteinimport