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Functional mapping of N-terminal residues in the yeast proteome uncovers novel determinants for mitochondrial protein import

N-terminal ends of polypeptides are critical for the selective co-translational recruitment of N-terminal modification enzymes. However, it is unknown whether specific N-terminal signatures differentially regulate protein fate according to their cellular functions. In this work, we developed an in-s...

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Autores principales: Nashed, Salomé, El Barbry, Houssam, Benchouaia, Médine, Dijoux-Maréchal, Angélie, Delaveau, Thierry, Ruiz-Gutierrez, Nadia, Gaulier, Lucie, Tribouillard-Tanvier, Déborah, Chevreux, Guillaume, Le Crom, Stéphane, Palancade, Benoit, Devaux, Frédéric, Laine, Elodie, Garcia, Mathilde
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10482271/
https://www.ncbi.nlm.nih.gov/pubmed/37585488
http://dx.doi.org/10.1371/journal.pgen.1010848
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author Nashed, Salomé
El Barbry, Houssam
Benchouaia, Médine
Dijoux-Maréchal, Angélie
Delaveau, Thierry
Ruiz-Gutierrez, Nadia
Gaulier, Lucie
Tribouillard-Tanvier, Déborah
Chevreux, Guillaume
Le Crom, Stéphane
Palancade, Benoit
Devaux, Frédéric
Laine, Elodie
Garcia, Mathilde
author_facet Nashed, Salomé
El Barbry, Houssam
Benchouaia, Médine
Dijoux-Maréchal, Angélie
Delaveau, Thierry
Ruiz-Gutierrez, Nadia
Gaulier, Lucie
Tribouillard-Tanvier, Déborah
Chevreux, Guillaume
Le Crom, Stéphane
Palancade, Benoit
Devaux, Frédéric
Laine, Elodie
Garcia, Mathilde
author_sort Nashed, Salomé
collection PubMed
description N-terminal ends of polypeptides are critical for the selective co-translational recruitment of N-terminal modification enzymes. However, it is unknown whether specific N-terminal signatures differentially regulate protein fate according to their cellular functions. In this work, we developed an in-silico approach to detect functional preferences in cellular N-terminomes, and identified in S. cerevisiae more than 200 Gene Ontology terms with specific N-terminal signatures. In particular, we discovered that Mitochondrial Targeting Sequences (MTS) show a strong and specific over-representation at position 2 of hydrophobic residues known to define potential substrates of the N-terminal acetyltransferase NatC. We validated mitochondrial precursors as co-translational targets of NatC by selective purification of translating ribosomes, and found that their N-terminal signature is conserved in Saccharomycotina yeasts. Finally, systematic mutagenesis of the position 2 in a prototypal yeast mitochondrial protein confirmed its critical role in mitochondrial protein import. Our work highlights the hydrophobicity of MTS N-terminal residues and their targeting by NatC as important features for the definition of the mitochondrial proteome, providing a molecular explanation for mitochondrial defects observed in yeast or human NatC-depleted cells. Functional mapping of N-terminal residues thus has the potential to support the discovery of novel mechanisms of protein regulation or targeting.
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spelling pubmed-104822712023-09-07 Functional mapping of N-terminal residues in the yeast proteome uncovers novel determinants for mitochondrial protein import Nashed, Salomé El Barbry, Houssam Benchouaia, Médine Dijoux-Maréchal, Angélie Delaveau, Thierry Ruiz-Gutierrez, Nadia Gaulier, Lucie Tribouillard-Tanvier, Déborah Chevreux, Guillaume Le Crom, Stéphane Palancade, Benoit Devaux, Frédéric Laine, Elodie Garcia, Mathilde PLoS Genet Research Article N-terminal ends of polypeptides are critical for the selective co-translational recruitment of N-terminal modification enzymes. However, it is unknown whether specific N-terminal signatures differentially regulate protein fate according to their cellular functions. In this work, we developed an in-silico approach to detect functional preferences in cellular N-terminomes, and identified in S. cerevisiae more than 200 Gene Ontology terms with specific N-terminal signatures. In particular, we discovered that Mitochondrial Targeting Sequences (MTS) show a strong and specific over-representation at position 2 of hydrophobic residues known to define potential substrates of the N-terminal acetyltransferase NatC. We validated mitochondrial precursors as co-translational targets of NatC by selective purification of translating ribosomes, and found that their N-terminal signature is conserved in Saccharomycotina yeasts. Finally, systematic mutagenesis of the position 2 in a prototypal yeast mitochondrial protein confirmed its critical role in mitochondrial protein import. Our work highlights the hydrophobicity of MTS N-terminal residues and their targeting by NatC as important features for the definition of the mitochondrial proteome, providing a molecular explanation for mitochondrial defects observed in yeast or human NatC-depleted cells. Functional mapping of N-terminal residues thus has the potential to support the discovery of novel mechanisms of protein regulation or targeting. Public Library of Science 2023-08-16 /pmc/articles/PMC10482271/ /pubmed/37585488 http://dx.doi.org/10.1371/journal.pgen.1010848 Text en © 2023 Nashed et al https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Nashed, Salomé
El Barbry, Houssam
Benchouaia, Médine
Dijoux-Maréchal, Angélie
Delaveau, Thierry
Ruiz-Gutierrez, Nadia
Gaulier, Lucie
Tribouillard-Tanvier, Déborah
Chevreux, Guillaume
Le Crom, Stéphane
Palancade, Benoit
Devaux, Frédéric
Laine, Elodie
Garcia, Mathilde
Functional mapping of N-terminal residues in the yeast proteome uncovers novel determinants for mitochondrial protein import
title Functional mapping of N-terminal residues in the yeast proteome uncovers novel determinants for mitochondrial protein import
title_full Functional mapping of N-terminal residues in the yeast proteome uncovers novel determinants for mitochondrial protein import
title_fullStr Functional mapping of N-terminal residues in the yeast proteome uncovers novel determinants for mitochondrial protein import
title_full_unstemmed Functional mapping of N-terminal residues in the yeast proteome uncovers novel determinants for mitochondrial protein import
title_short Functional mapping of N-terminal residues in the yeast proteome uncovers novel determinants for mitochondrial protein import
title_sort functional mapping of n-terminal residues in the yeast proteome uncovers novel determinants for mitochondrial protein import
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10482271/
https://www.ncbi.nlm.nih.gov/pubmed/37585488
http://dx.doi.org/10.1371/journal.pgen.1010848
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