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Identification of Autophagosome-associated Proteins and Regulators by Quantitative Proteomic Analysis and Genetic Screens

Autophagy is one of the major intracellular catabolic pathways, but little is known about the composition of autophagosomes. To study the associated proteins, we isolated autophagosomes from human breast cancer cells using two different biochemical methods and three stimulus types: amino acid depriv...

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Autores principales: Dengjel, Jörn, Høyer-Hansen, Maria, Nielsen, Maria O., Eisenberg, Tobias, Harder, Lea M., Schandorff, Søren, Farkas, Thomas, Kirkegaard, Thomas, Becker, Andrea C., Schroeder, Sabrina, Vanselow, Katja, Lundberg, Emma, Nielsen, Mogens M., Kristensen, Anders R., Akimov, Vyacheslav, Bunkenborg, Jakob, Madeo, Frank, Jäättelä, Marja, Andersen, Jens S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The American Society for Biochemistry and Molecular Biology 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3316729/
https://www.ncbi.nlm.nih.gov/pubmed/22311637
http://dx.doi.org/10.1074/mcp.M111.014035
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author Dengjel, Jörn
Høyer-Hansen, Maria
Nielsen, Maria O.
Eisenberg, Tobias
Harder, Lea M.
Schandorff, Søren
Farkas, Thomas
Kirkegaard, Thomas
Becker, Andrea C.
Schroeder, Sabrina
Vanselow, Katja
Lundberg, Emma
Nielsen, Mogens M.
Kristensen, Anders R.
Akimov, Vyacheslav
Bunkenborg, Jakob
Madeo, Frank
Jäättelä, Marja
Andersen, Jens S.
author_facet Dengjel, Jörn
Høyer-Hansen, Maria
Nielsen, Maria O.
Eisenberg, Tobias
Harder, Lea M.
Schandorff, Søren
Farkas, Thomas
Kirkegaard, Thomas
Becker, Andrea C.
Schroeder, Sabrina
Vanselow, Katja
Lundberg, Emma
Nielsen, Mogens M.
Kristensen, Anders R.
Akimov, Vyacheslav
Bunkenborg, Jakob
Madeo, Frank
Jäättelä, Marja
Andersen, Jens S.
author_sort Dengjel, Jörn
collection PubMed
description Autophagy is one of the major intracellular catabolic pathways, but little is known about the composition of autophagosomes. To study the associated proteins, we isolated autophagosomes from human breast cancer cells using two different biochemical methods and three stimulus types: amino acid deprivation or rapamycin or concanamycin A treatment. The autophagosome-associated proteins were dependent on stimulus, but a core set of proteins was stimulus-independent. Remarkably, proteasomal proteins were abundant among the stimulus-independent common autophagosome-associated proteins, and the activation of autophagy significantly decreased the cellular proteasome level and activity supporting interplay between the two degradation pathways. A screen of yeast strains defective in the orthologs of the human genes encoding for a common set of autophagosome-associated proteins revealed several regulators of autophagy, including subunits of the retromer complex. The combined spatiotemporal proteomic and genetic data sets presented here provide a basis for further characterization of autophagosome biogenesis and cargo selection.
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spelling pubmed-33167292012-04-10 Identification of Autophagosome-associated Proteins and Regulators by Quantitative Proteomic Analysis and Genetic Screens Dengjel, Jörn Høyer-Hansen, Maria Nielsen, Maria O. Eisenberg, Tobias Harder, Lea M. Schandorff, Søren Farkas, Thomas Kirkegaard, Thomas Becker, Andrea C. Schroeder, Sabrina Vanselow, Katja Lundberg, Emma Nielsen, Mogens M. Kristensen, Anders R. Akimov, Vyacheslav Bunkenborg, Jakob Madeo, Frank Jäättelä, Marja Andersen, Jens S. Mol Cell Proteomics Special Issue: Prospects in Space and Time Autophagy is one of the major intracellular catabolic pathways, but little is known about the composition of autophagosomes. To study the associated proteins, we isolated autophagosomes from human breast cancer cells using two different biochemical methods and three stimulus types: amino acid deprivation or rapamycin or concanamycin A treatment. The autophagosome-associated proteins were dependent on stimulus, but a core set of proteins was stimulus-independent. Remarkably, proteasomal proteins were abundant among the stimulus-independent common autophagosome-associated proteins, and the activation of autophagy significantly decreased the cellular proteasome level and activity supporting interplay between the two degradation pathways. A screen of yeast strains defective in the orthologs of the human genes encoding for a common set of autophagosome-associated proteins revealed several regulators of autophagy, including subunits of the retromer complex. The combined spatiotemporal proteomic and genetic data sets presented here provide a basis for further characterization of autophagosome biogenesis and cargo selection. The American Society for Biochemistry and Molecular Biology 2012-03 2012-02-06 /pmc/articles/PMC3316729/ /pubmed/22311637 http://dx.doi.org/10.1074/mcp.M111.014035 Text en © 2012 by The American Society for Biochemistry and Molecular Biology, Inc. Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/3.0/) applies to Author Choice Articles
spellingShingle Special Issue: Prospects in Space and Time
Dengjel, Jörn
Høyer-Hansen, Maria
Nielsen, Maria O.
Eisenberg, Tobias
Harder, Lea M.
Schandorff, Søren
Farkas, Thomas
Kirkegaard, Thomas
Becker, Andrea C.
Schroeder, Sabrina
Vanselow, Katja
Lundberg, Emma
Nielsen, Mogens M.
Kristensen, Anders R.
Akimov, Vyacheslav
Bunkenborg, Jakob
Madeo, Frank
Jäättelä, Marja
Andersen, Jens S.
Identification of Autophagosome-associated Proteins and Regulators by Quantitative Proteomic Analysis and Genetic Screens
title Identification of Autophagosome-associated Proteins and Regulators by Quantitative Proteomic Analysis and Genetic Screens
title_full Identification of Autophagosome-associated Proteins and Regulators by Quantitative Proteomic Analysis and Genetic Screens
title_fullStr Identification of Autophagosome-associated Proteins and Regulators by Quantitative Proteomic Analysis and Genetic Screens
title_full_unstemmed Identification of Autophagosome-associated Proteins and Regulators by Quantitative Proteomic Analysis and Genetic Screens
title_short Identification of Autophagosome-associated Proteins and Regulators by Quantitative Proteomic Analysis and Genetic Screens
title_sort identification of autophagosome-associated proteins and regulators by quantitative proteomic analysis and genetic screens
topic Special Issue: Prospects in Space and Time
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3316729/
https://www.ncbi.nlm.nih.gov/pubmed/22311637
http://dx.doi.org/10.1074/mcp.M111.014035
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