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N-terminal β-strand underpins biochemical specialization of an ATG8 isoform

Autophagy-related protein 8 (ATG8) is a highly conserved ubiquitin-like protein that modulates autophagy pathways by binding autophagic membranes and a number of proteins, including cargo receptors and core autophagy components. Throughout plant evolution, ATG8 has expanded from a single protein in...

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Autores principales: Zess, Erin K., Jensen, Cassandra, Cruz-Mireles, Neftaly, De la Concepcion, Juan Carlos, Sklenar, Jan, Stephani, Madlen, Imre, Richard, Roitinger, Elisabeth, Hughes, Richard, Belhaj, Khaoula, Mechtler, Karl, Menke, Frank L. H., Bozkurt, Tolga, Banfield, Mark J., Kamoun, Sophien, Maqbool, Abbas, Dagdas, Yasin F.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6675122/
https://www.ncbi.nlm.nih.gov/pubmed/31329577
http://dx.doi.org/10.1371/journal.pbio.3000373
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author Zess, Erin K.
Jensen, Cassandra
Cruz-Mireles, Neftaly
De la Concepcion, Juan Carlos
Sklenar, Jan
Stephani, Madlen
Imre, Richard
Roitinger, Elisabeth
Hughes, Richard
Belhaj, Khaoula
Mechtler, Karl
Menke, Frank L. H.
Bozkurt, Tolga
Banfield, Mark J.
Kamoun, Sophien
Maqbool, Abbas
Dagdas, Yasin F.
author_facet Zess, Erin K.
Jensen, Cassandra
Cruz-Mireles, Neftaly
De la Concepcion, Juan Carlos
Sklenar, Jan
Stephani, Madlen
Imre, Richard
Roitinger, Elisabeth
Hughes, Richard
Belhaj, Khaoula
Mechtler, Karl
Menke, Frank L. H.
Bozkurt, Tolga
Banfield, Mark J.
Kamoun, Sophien
Maqbool, Abbas
Dagdas, Yasin F.
author_sort Zess, Erin K.
collection PubMed
description Autophagy-related protein 8 (ATG8) is a highly conserved ubiquitin-like protein that modulates autophagy pathways by binding autophagic membranes and a number of proteins, including cargo receptors and core autophagy components. Throughout plant evolution, ATG8 has expanded from a single protein in algae to multiple isoforms in higher plants. However, the degree to which ATG8 isoforms have functionally specialized to bind distinct proteins remains unclear. Here, we describe a comprehensive protein–protein interaction resource, obtained using in planta immunoprecipitation (IP) followed by mass spectrometry (MS), to define the potato ATG8 interactome. We discovered that ATG8 isoforms bind distinct sets of plant proteins with varying degrees of overlap. This prompted us to define the biochemical basis of ATG8 specialization by comparing two potato ATG8 isoforms using both in vivo protein interaction assays and in vitro quantitative binding affinity analyses. These experiments revealed that the N-terminal β-strand—and, in particular, a single amino acid polymorphism—underpins binding specificity to the substrate PexRD54 by shaping the hydrophobic pocket that accommodates this protein’s ATG8-interacting motif (AIM). Additional proteomics experiments indicated that the N-terminal β-strand shapes the broader ATG8 interactor profiles, defining interaction specificity with about 80 plant proteins. Our findings are consistent with the view that ATG8 isoforms comprise a layer of specificity in the regulation of selective autophagy pathways in plants.
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spelling pubmed-66751222019-08-06 N-terminal β-strand underpins biochemical specialization of an ATG8 isoform Zess, Erin K. Jensen, Cassandra Cruz-Mireles, Neftaly De la Concepcion, Juan Carlos Sklenar, Jan Stephani, Madlen Imre, Richard Roitinger, Elisabeth Hughes, Richard Belhaj, Khaoula Mechtler, Karl Menke, Frank L. H. Bozkurt, Tolga Banfield, Mark J. Kamoun, Sophien Maqbool, Abbas Dagdas, Yasin F. PLoS Biol Methods and Resources Autophagy-related protein 8 (ATG8) is a highly conserved ubiquitin-like protein that modulates autophagy pathways by binding autophagic membranes and a number of proteins, including cargo receptors and core autophagy components. Throughout plant evolution, ATG8 has expanded from a single protein in algae to multiple isoforms in higher plants. However, the degree to which ATG8 isoforms have functionally specialized to bind distinct proteins remains unclear. Here, we describe a comprehensive protein–protein interaction resource, obtained using in planta immunoprecipitation (IP) followed by mass spectrometry (MS), to define the potato ATG8 interactome. We discovered that ATG8 isoforms bind distinct sets of plant proteins with varying degrees of overlap. This prompted us to define the biochemical basis of ATG8 specialization by comparing two potato ATG8 isoforms using both in vivo protein interaction assays and in vitro quantitative binding affinity analyses. These experiments revealed that the N-terminal β-strand—and, in particular, a single amino acid polymorphism—underpins binding specificity to the substrate PexRD54 by shaping the hydrophobic pocket that accommodates this protein’s ATG8-interacting motif (AIM). Additional proteomics experiments indicated that the N-terminal β-strand shapes the broader ATG8 interactor profiles, defining interaction specificity with about 80 plant proteins. Our findings are consistent with the view that ATG8 isoforms comprise a layer of specificity in the regulation of selective autophagy pathways in plants. Public Library of Science 2019-07-22 /pmc/articles/PMC6675122/ /pubmed/31329577 http://dx.doi.org/10.1371/journal.pbio.3000373 Text en © 2019 Zess 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 Methods and Resources
Zess, Erin K.
Jensen, Cassandra
Cruz-Mireles, Neftaly
De la Concepcion, Juan Carlos
Sklenar, Jan
Stephani, Madlen
Imre, Richard
Roitinger, Elisabeth
Hughes, Richard
Belhaj, Khaoula
Mechtler, Karl
Menke, Frank L. H.
Bozkurt, Tolga
Banfield, Mark J.
Kamoun, Sophien
Maqbool, Abbas
Dagdas, Yasin F.
N-terminal β-strand underpins biochemical specialization of an ATG8 isoform
title N-terminal β-strand underpins biochemical specialization of an ATG8 isoform
title_full N-terminal β-strand underpins biochemical specialization of an ATG8 isoform
title_fullStr N-terminal β-strand underpins biochemical specialization of an ATG8 isoform
title_full_unstemmed N-terminal β-strand underpins biochemical specialization of an ATG8 isoform
title_short N-terminal β-strand underpins biochemical specialization of an ATG8 isoform
title_sort n-terminal β-strand underpins biochemical specialization of an atg8 isoform
topic Methods and Resources
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6675122/
https://www.ncbi.nlm.nih.gov/pubmed/31329577
http://dx.doi.org/10.1371/journal.pbio.3000373
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