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The Endoplasmic Reticulum Chaperone Calnexin Is a NADPH Oxidase NOX4 Interacting Protein

Within the family of NADPH oxidases, NOX4 is unique as it is predominantly localized in the endoplasmic reticulum, has constitutive activity, and generates hydrogen peroxide (H(2)O(2)). We hypothesize that these features are consequences of a so far unidentified NOX4-interacting protein. Two-dimensi...

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Autores principales: Prior, Kim-Kristin, Wittig, Ilka, Leisegang, Matthias S., Groenendyk, Jody, Weissmann, Norbert, Michalak, Marek, Jansen-Dürr, Pidder, Shah, Ajay M., Brandes, Ralf P.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4807287/
https://www.ncbi.nlm.nih.gov/pubmed/26861875
http://dx.doi.org/10.1074/jbc.M115.710772
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author Prior, Kim-Kristin
Wittig, Ilka
Leisegang, Matthias S.
Groenendyk, Jody
Weissmann, Norbert
Michalak, Marek
Jansen-Dürr, Pidder
Shah, Ajay M.
Brandes, Ralf P.
author_facet Prior, Kim-Kristin
Wittig, Ilka
Leisegang, Matthias S.
Groenendyk, Jody
Weissmann, Norbert
Michalak, Marek
Jansen-Dürr, Pidder
Shah, Ajay M.
Brandes, Ralf P.
author_sort Prior, Kim-Kristin
collection PubMed
description Within the family of NADPH oxidases, NOX4 is unique as it is predominantly localized in the endoplasmic reticulum, has constitutive activity, and generates hydrogen peroxide (H(2)O(2)). We hypothesize that these features are consequences of a so far unidentified NOX4-interacting protein. Two-dimensional blue native (BN) electrophorese combined with SDS-PAGE yielded NOX4 to reside in macromolecular complexes. Interacting proteins were screened by quantitative SILAC (stable isotope labeling of amino acids in cell culture) co-immunoprecipitation (Co-IP) in HEK293 cells stably overexpressing NOX4. By this technique, several interacting proteins were identified with calnexin showing the most robust interaction. Calnexin also resided in NOX4-containing complexes as demonstrated by complexome profiling from BN-PAGE. The calnexin NOX4 interaction could be confirmed by reverse Co-IP and proximity ligation assay, whereas NOX1, NOX2, or NOX5 did not interact with calnexin. Calnexin deficiency as studied in mouse embryonic fibroblasts from calnexin(−/−) mice or in response to calnexin shRNA reduced cellular NOX4 protein expression and reactive oxygen species formation. Our results suggest that endogenous NOX4 forms macromolecular complexes with calnexin, which are needed for the proper maturation, processing, and function of NOX4 in the endoplasmic reticulum.
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spelling pubmed-48072872016-03-25 The Endoplasmic Reticulum Chaperone Calnexin Is a NADPH Oxidase NOX4 Interacting Protein Prior, Kim-Kristin Wittig, Ilka Leisegang, Matthias S. Groenendyk, Jody Weissmann, Norbert Michalak, Marek Jansen-Dürr, Pidder Shah, Ajay M. Brandes, Ralf P. J Biol Chem Cell Biology Within the family of NADPH oxidases, NOX4 is unique as it is predominantly localized in the endoplasmic reticulum, has constitutive activity, and generates hydrogen peroxide (H(2)O(2)). We hypothesize that these features are consequences of a so far unidentified NOX4-interacting protein. Two-dimensional blue native (BN) electrophorese combined with SDS-PAGE yielded NOX4 to reside in macromolecular complexes. Interacting proteins were screened by quantitative SILAC (stable isotope labeling of amino acids in cell culture) co-immunoprecipitation (Co-IP) in HEK293 cells stably overexpressing NOX4. By this technique, several interacting proteins were identified with calnexin showing the most robust interaction. Calnexin also resided in NOX4-containing complexes as demonstrated by complexome profiling from BN-PAGE. The calnexin NOX4 interaction could be confirmed by reverse Co-IP and proximity ligation assay, whereas NOX1, NOX2, or NOX5 did not interact with calnexin. Calnexin deficiency as studied in mouse embryonic fibroblasts from calnexin(−/−) mice or in response to calnexin shRNA reduced cellular NOX4 protein expression and reactive oxygen species formation. Our results suggest that endogenous NOX4 forms macromolecular complexes with calnexin, which are needed for the proper maturation, processing, and function of NOX4 in the endoplasmic reticulum. American Society for Biochemistry and Molecular Biology 2016-03-25 2016-02-09 /pmc/articles/PMC4807287/ /pubmed/26861875 http://dx.doi.org/10.1074/jbc.M115.710772 Text en © 2016 by The American Society for Biochemistry and Molecular Biology, Inc. Author's Choice—Final version free via Creative Commons CC-BY license (http://creativecommons.org/licenses/by/4.0) .
spellingShingle Cell Biology
Prior, Kim-Kristin
Wittig, Ilka
Leisegang, Matthias S.
Groenendyk, Jody
Weissmann, Norbert
Michalak, Marek
Jansen-Dürr, Pidder
Shah, Ajay M.
Brandes, Ralf P.
The Endoplasmic Reticulum Chaperone Calnexin Is a NADPH Oxidase NOX4 Interacting Protein
title The Endoplasmic Reticulum Chaperone Calnexin Is a NADPH Oxidase NOX4 Interacting Protein
title_full The Endoplasmic Reticulum Chaperone Calnexin Is a NADPH Oxidase NOX4 Interacting Protein
title_fullStr The Endoplasmic Reticulum Chaperone Calnexin Is a NADPH Oxidase NOX4 Interacting Protein
title_full_unstemmed The Endoplasmic Reticulum Chaperone Calnexin Is a NADPH Oxidase NOX4 Interacting Protein
title_short The Endoplasmic Reticulum Chaperone Calnexin Is a NADPH Oxidase NOX4 Interacting Protein
title_sort endoplasmic reticulum chaperone calnexin is a nadph oxidase nox4 interacting protein
topic Cell Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4807287/
https://www.ncbi.nlm.nih.gov/pubmed/26861875
http://dx.doi.org/10.1074/jbc.M115.710772
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