Cargando…

Identification and characterization of protein N-myristoylation occurring on four human mitochondrial proteins, SAMM50, TOMM40, MIC19, and MIC25

Previously, we showed that SAMM50, a mitochondrial outer membrane protein, is N-myristoylated, and this lipid modification is required for the proper targeting of SAMM50 to mitochondria. In this study, we characterized protein N-myristoylation occurring on four human mitochondrial proteins, SAMM50,...

Descripción completa

Detalles Bibliográficos
Autores principales: Utsumi, Toshihiko, Matsuzaki, Kanako, Kiwado, Aya, Tanikawa, Ayane, Kikkawa, Yuki, Hosokawa, Takuro, Otsuka, Aoi, Iuchi, Yoshihito, Kobuchi, Hirotsugu, Moriya, Koko
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6235283/
https://www.ncbi.nlm.nih.gov/pubmed/30427857
http://dx.doi.org/10.1371/journal.pone.0206355
_version_ 1783370849686913024
author Utsumi, Toshihiko
Matsuzaki, Kanako
Kiwado, Aya
Tanikawa, Ayane
Kikkawa, Yuki
Hosokawa, Takuro
Otsuka, Aoi
Iuchi, Yoshihito
Kobuchi, Hirotsugu
Moriya, Koko
author_facet Utsumi, Toshihiko
Matsuzaki, Kanako
Kiwado, Aya
Tanikawa, Ayane
Kikkawa, Yuki
Hosokawa, Takuro
Otsuka, Aoi
Iuchi, Yoshihito
Kobuchi, Hirotsugu
Moriya, Koko
author_sort Utsumi, Toshihiko
collection PubMed
description Previously, we showed that SAMM50, a mitochondrial outer membrane protein, is N-myristoylated, and this lipid modification is required for the proper targeting of SAMM50 to mitochondria. In this study, we characterized protein N-myristoylation occurring on four human mitochondrial proteins, SAMM50, TOMM40, MIC19, and MIC25, three of which are components of the mitochondrial intermembrane space bridging (MIB) complex, which plays a critical role in the structure and function of mitochondria. In vitro and in vivo metabolic labeling experiments revealed that all four of these proteins were N-myristoylated. Analysis of intracellular localization of wild-type and non-myristoylated G2A mutants of these proteins by immunofluorescence microscopic analysis and subcellular fractionation analysis indicated that protein N-myristoylation plays a critical role in mitochondrial targeting and membrane binding of two MIB components, SAMM50 and MIC19, but not those of TOMM40 and MIC25. Immunoprecipitation experiments using specific antibodies revealed that MIC19, but not MIC25, was a major N-myristoylated binding partner of SAMM50. Immunoprecipitation experiments using a stable transformant of MIC19 confirmed that protein N-myristoylation of MIC19 is required for the interaction between MIC19 and SAMM50, as reported previously. Thus, protein N-myristoylation occurring on two mitochondrial MIB components, SAMM50 and MIC19, plays a critical role in the mitochondrial targeting and protein-protein interaction between these two MIB components.
format Online
Article
Text
id pubmed-6235283
institution National Center for Biotechnology Information
language English
publishDate 2018
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-62352832018-12-01 Identification and characterization of protein N-myristoylation occurring on four human mitochondrial proteins, SAMM50, TOMM40, MIC19, and MIC25 Utsumi, Toshihiko Matsuzaki, Kanako Kiwado, Aya Tanikawa, Ayane Kikkawa, Yuki Hosokawa, Takuro Otsuka, Aoi Iuchi, Yoshihito Kobuchi, Hirotsugu Moriya, Koko PLoS One Research Article Previously, we showed that SAMM50, a mitochondrial outer membrane protein, is N-myristoylated, and this lipid modification is required for the proper targeting of SAMM50 to mitochondria. In this study, we characterized protein N-myristoylation occurring on four human mitochondrial proteins, SAMM50, TOMM40, MIC19, and MIC25, three of which are components of the mitochondrial intermembrane space bridging (MIB) complex, which plays a critical role in the structure and function of mitochondria. In vitro and in vivo metabolic labeling experiments revealed that all four of these proteins were N-myristoylated. Analysis of intracellular localization of wild-type and non-myristoylated G2A mutants of these proteins by immunofluorescence microscopic analysis and subcellular fractionation analysis indicated that protein N-myristoylation plays a critical role in mitochondrial targeting and membrane binding of two MIB components, SAMM50 and MIC19, but not those of TOMM40 and MIC25. Immunoprecipitation experiments using specific antibodies revealed that MIC19, but not MIC25, was a major N-myristoylated binding partner of SAMM50. Immunoprecipitation experiments using a stable transformant of MIC19 confirmed that protein N-myristoylation of MIC19 is required for the interaction between MIC19 and SAMM50, as reported previously. Thus, protein N-myristoylation occurring on two mitochondrial MIB components, SAMM50 and MIC19, plays a critical role in the mitochondrial targeting and protein-protein interaction between these two MIB components. Public Library of Science 2018-11-14 /pmc/articles/PMC6235283/ /pubmed/30427857 http://dx.doi.org/10.1371/journal.pone.0206355 Text en © 2018 Utsumi et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://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
Utsumi, Toshihiko
Matsuzaki, Kanako
Kiwado, Aya
Tanikawa, Ayane
Kikkawa, Yuki
Hosokawa, Takuro
Otsuka, Aoi
Iuchi, Yoshihito
Kobuchi, Hirotsugu
Moriya, Koko
Identification and characterization of protein N-myristoylation occurring on four human mitochondrial proteins, SAMM50, TOMM40, MIC19, and MIC25
title Identification and characterization of protein N-myristoylation occurring on four human mitochondrial proteins, SAMM50, TOMM40, MIC19, and MIC25
title_full Identification and characterization of protein N-myristoylation occurring on four human mitochondrial proteins, SAMM50, TOMM40, MIC19, and MIC25
title_fullStr Identification and characterization of protein N-myristoylation occurring on four human mitochondrial proteins, SAMM50, TOMM40, MIC19, and MIC25
title_full_unstemmed Identification and characterization of protein N-myristoylation occurring on four human mitochondrial proteins, SAMM50, TOMM40, MIC19, and MIC25
title_short Identification and characterization of protein N-myristoylation occurring on four human mitochondrial proteins, SAMM50, TOMM40, MIC19, and MIC25
title_sort identification and characterization of protein n-myristoylation occurring on four human mitochondrial proteins, samm50, tomm40, mic19, and mic25
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6235283/
https://www.ncbi.nlm.nih.gov/pubmed/30427857
http://dx.doi.org/10.1371/journal.pone.0206355
work_keys_str_mv AT utsumitoshihiko identificationandcharacterizationofproteinnmyristoylationoccurringonfourhumanmitochondrialproteinssamm50tomm40mic19andmic25
AT matsuzakikanako identificationandcharacterizationofproteinnmyristoylationoccurringonfourhumanmitochondrialproteinssamm50tomm40mic19andmic25
AT kiwadoaya identificationandcharacterizationofproteinnmyristoylationoccurringonfourhumanmitochondrialproteinssamm50tomm40mic19andmic25
AT tanikawaayane identificationandcharacterizationofproteinnmyristoylationoccurringonfourhumanmitochondrialproteinssamm50tomm40mic19andmic25
AT kikkawayuki identificationandcharacterizationofproteinnmyristoylationoccurringonfourhumanmitochondrialproteinssamm50tomm40mic19andmic25
AT hosokawatakuro identificationandcharacterizationofproteinnmyristoylationoccurringonfourhumanmitochondrialproteinssamm50tomm40mic19andmic25
AT otsukaaoi identificationandcharacterizationofproteinnmyristoylationoccurringonfourhumanmitochondrialproteinssamm50tomm40mic19andmic25
AT iuchiyoshihito identificationandcharacterizationofproteinnmyristoylationoccurringonfourhumanmitochondrialproteinssamm50tomm40mic19andmic25
AT kobuchihirotsugu identificationandcharacterizationofproteinnmyristoylationoccurringonfourhumanmitochondrialproteinssamm50tomm40mic19andmic25
AT moriyakoko identificationandcharacterizationofproteinnmyristoylationoccurringonfourhumanmitochondrialproteinssamm50tomm40mic19andmic25