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Covalent Label Transfer between Peroxisomal Importomer Components Reveals Export-driven Import Interactions

Peroxisomes are vital metabolic organelles found in almost all eukaryotic organisms, and they rely exclusively on import of their matrix protein content from the cytosol. In vitro import of proteins into isolated peroxisomal fractions has provided a wealth of knowledge on the import process. However...

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Autores principales: Bhogal, Moninder S., Lanyon-Hogg, Thomas, Johnston, Katherine A., Warriner, Stuart L., Baker, Alison
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/PMC4732227/
https://www.ncbi.nlm.nih.gov/pubmed/26567336
http://dx.doi.org/10.1074/jbc.M115.686501
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author Bhogal, Moninder S.
Lanyon-Hogg, Thomas
Johnston, Katherine A.
Warriner, Stuart L.
Baker, Alison
author_facet Bhogal, Moninder S.
Lanyon-Hogg, Thomas
Johnston, Katherine A.
Warriner, Stuart L.
Baker, Alison
author_sort Bhogal, Moninder S.
collection PubMed
description Peroxisomes are vital metabolic organelles found in almost all eukaryotic organisms, and they rely exclusively on import of their matrix protein content from the cytosol. In vitro import of proteins into isolated peroxisomal fractions has provided a wealth of knowledge on the import process. However, the common method of protease protection garnered no information on the import of an N-terminally truncated PEX5 (PEX5C) receptor construct or peroxisomal malate dehydrogenase 1 (pMDH1) cargo protein into sunflower peroxisomes because of high degrees of protease susceptibility or resistance, respectively. Here we present a means for analysis of in vitro import through a covalent biotin label transfer and employ this method to the import of PEX5C. Label transfer demonstrates that the PEX5C construct is monomeric under the conditions of the import assay. This technique was capable of identifying the PEX5-PEX14 interaction as the first interaction of the import process through competition experiments. Labeling of the peroxisomal protein import machinery by PEX5C demonstrated that this interaction was independent of added cargo protein, and, strikingly, the interaction between PEX5C and the import machinery was shown to be ATP-dependent. These important mechanistic insights highlight the power of label transfer in studying interactions, rather than proteins, of interest and demonstrate that this technique should be applied to future studies of peroxisomal in vitro import.
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spelling pubmed-47322272016-02-09 Covalent Label Transfer between Peroxisomal Importomer Components Reveals Export-driven Import Interactions Bhogal, Moninder S. Lanyon-Hogg, Thomas Johnston, Katherine A. Warriner, Stuart L. Baker, Alison J Biol Chem Cell Biology Peroxisomes are vital metabolic organelles found in almost all eukaryotic organisms, and they rely exclusively on import of their matrix protein content from the cytosol. In vitro import of proteins into isolated peroxisomal fractions has provided a wealth of knowledge on the import process. However, the common method of protease protection garnered no information on the import of an N-terminally truncated PEX5 (PEX5C) receptor construct or peroxisomal malate dehydrogenase 1 (pMDH1) cargo protein into sunflower peroxisomes because of high degrees of protease susceptibility or resistance, respectively. Here we present a means for analysis of in vitro import through a covalent biotin label transfer and employ this method to the import of PEX5C. Label transfer demonstrates that the PEX5C construct is monomeric under the conditions of the import assay. This technique was capable of identifying the PEX5-PEX14 interaction as the first interaction of the import process through competition experiments. Labeling of the peroxisomal protein import machinery by PEX5C demonstrated that this interaction was independent of added cargo protein, and, strikingly, the interaction between PEX5C and the import machinery was shown to be ATP-dependent. These important mechanistic insights highlight the power of label transfer in studying interactions, rather than proteins, of interest and demonstrate that this technique should be applied to future studies of peroxisomal in vitro import. American Society for Biochemistry and Molecular Biology 2016-01-29 2015-11-13 /pmc/articles/PMC4732227/ /pubmed/26567336 http://dx.doi.org/10.1074/jbc.M115.686501 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
Bhogal, Moninder S.
Lanyon-Hogg, Thomas
Johnston, Katherine A.
Warriner, Stuart L.
Baker, Alison
Covalent Label Transfer between Peroxisomal Importomer Components Reveals Export-driven Import Interactions
title Covalent Label Transfer between Peroxisomal Importomer Components Reveals Export-driven Import Interactions
title_full Covalent Label Transfer between Peroxisomal Importomer Components Reveals Export-driven Import Interactions
title_fullStr Covalent Label Transfer between Peroxisomal Importomer Components Reveals Export-driven Import Interactions
title_full_unstemmed Covalent Label Transfer between Peroxisomal Importomer Components Reveals Export-driven Import Interactions
title_short Covalent Label Transfer between Peroxisomal Importomer Components Reveals Export-driven Import Interactions
title_sort covalent label transfer between peroxisomal importomer components reveals export-driven import interactions
topic Cell Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4732227/
https://www.ncbi.nlm.nih.gov/pubmed/26567336
http://dx.doi.org/10.1074/jbc.M115.686501
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