Cargando…

Proteasome Activity Profiling Uncovers Alteration of Catalytic β2 and β5 Subunits of the Stress-Induced Proteasome during Salinity Stress in Tomato Roots

The stress proteasome in the animal kingdom facilitates faster conversion of oxidized proteins during stress conditions by incorporating different catalytic β subunits. Plants deal with similar kind of stresses and also carry multiple paralogous genes encoding for each of the three catalytic β subun...

Descripción completa

Detalles Bibliográficos
Autores principales: Kovács, Judit, Poór, Péter, Kaschani, Farnusch, Chandrasekar, Balakumaran, Hong, Tram N., Misas-Villamil, Johana C., Xin, Bo T., Kaiser, Markus, Overkleeft, Herman S., Tari, Irma, van der Hoorn, Renier A. L.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5289967/
https://www.ncbi.nlm.nih.gov/pubmed/28217134
http://dx.doi.org/10.3389/fpls.2017.00107
_version_ 1782504566380560384
author Kovács, Judit
Poór, Péter
Kaschani, Farnusch
Chandrasekar, Balakumaran
Hong, Tram N.
Misas-Villamil, Johana C.
Xin, Bo T.
Kaiser, Markus
Overkleeft, Herman S.
Tari, Irma
van der Hoorn, Renier A. L.
author_facet Kovács, Judit
Poór, Péter
Kaschani, Farnusch
Chandrasekar, Balakumaran
Hong, Tram N.
Misas-Villamil, Johana C.
Xin, Bo T.
Kaiser, Markus
Overkleeft, Herman S.
Tari, Irma
van der Hoorn, Renier A. L.
author_sort Kovács, Judit
collection PubMed
description The stress proteasome in the animal kingdom facilitates faster conversion of oxidized proteins during stress conditions by incorporating different catalytic β subunits. Plants deal with similar kind of stresses and also carry multiple paralogous genes encoding for each of the three catalytic β subunits. Here, we investigated the existence of stress proteasomes upon abiotic stress (salt stress) in tomato roots. In contrast to Arabidopsis thaliana, tomato has a simplified proteasome gene set with single genes encoding each β subunit except for two genes encoding β2. Using proteasome activity profiling on tomato roots during salt stress, we discovered a transient modification of the catalytic subunits of the proteasome coinciding with a loss of cell viability. This stress-induced active proteasome disappears at later time points and coincides with the need to degrade oxidized proteins during salt stress. Subunit-selective proteasome probes and MS analysis of fluorescent 2D gels demonstrated that the detected stress-induced proteasome is not caused by an altered composition of subunits in active proteasomes, but involves an increased molecular weight of both labeled β2 and β5 subunits, and an additional acidic pI shift for labeled β5, whilst labeled β1 remains mostly unchanged. Treatment with phosphatase or glycosidases did not affect the migration pattern. This stress-induced proteasome may play an important role in PCD during abiotic stress.
format Online
Article
Text
id pubmed-5289967
institution National Center for Biotechnology Information
language English
publishDate 2017
publisher Frontiers Media S.A.
record_format MEDLINE/PubMed
spelling pubmed-52899672017-02-17 Proteasome Activity Profiling Uncovers Alteration of Catalytic β2 and β5 Subunits of the Stress-Induced Proteasome during Salinity Stress in Tomato Roots Kovács, Judit Poór, Péter Kaschani, Farnusch Chandrasekar, Balakumaran Hong, Tram N. Misas-Villamil, Johana C. Xin, Bo T. Kaiser, Markus Overkleeft, Herman S. Tari, Irma van der Hoorn, Renier A. L. Front Plant Sci Plant Science The stress proteasome in the animal kingdom facilitates faster conversion of oxidized proteins during stress conditions by incorporating different catalytic β subunits. Plants deal with similar kind of stresses and also carry multiple paralogous genes encoding for each of the three catalytic β subunits. Here, we investigated the existence of stress proteasomes upon abiotic stress (salt stress) in tomato roots. In contrast to Arabidopsis thaliana, tomato has a simplified proteasome gene set with single genes encoding each β subunit except for two genes encoding β2. Using proteasome activity profiling on tomato roots during salt stress, we discovered a transient modification of the catalytic subunits of the proteasome coinciding with a loss of cell viability. This stress-induced active proteasome disappears at later time points and coincides with the need to degrade oxidized proteins during salt stress. Subunit-selective proteasome probes and MS analysis of fluorescent 2D gels demonstrated that the detected stress-induced proteasome is not caused by an altered composition of subunits in active proteasomes, but involves an increased molecular weight of both labeled β2 and β5 subunits, and an additional acidic pI shift for labeled β5, whilst labeled β1 remains mostly unchanged. Treatment with phosphatase or glycosidases did not affect the migration pattern. This stress-induced proteasome may play an important role in PCD during abiotic stress. Frontiers Media S.A. 2017-02-03 /pmc/articles/PMC5289967/ /pubmed/28217134 http://dx.doi.org/10.3389/fpls.2017.00107 Text en Copyright © 2017 Kovács, Poór, Kaschani, Chandrasekar, Hong, Misas-Villamil, Xin, Kaiser, Overkleeft, Tari and van der Hoorn. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) or licensor are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Plant Science
Kovács, Judit
Poór, Péter
Kaschani, Farnusch
Chandrasekar, Balakumaran
Hong, Tram N.
Misas-Villamil, Johana C.
Xin, Bo T.
Kaiser, Markus
Overkleeft, Herman S.
Tari, Irma
van der Hoorn, Renier A. L.
Proteasome Activity Profiling Uncovers Alteration of Catalytic β2 and β5 Subunits of the Stress-Induced Proteasome during Salinity Stress in Tomato Roots
title Proteasome Activity Profiling Uncovers Alteration of Catalytic β2 and β5 Subunits of the Stress-Induced Proteasome during Salinity Stress in Tomato Roots
title_full Proteasome Activity Profiling Uncovers Alteration of Catalytic β2 and β5 Subunits of the Stress-Induced Proteasome during Salinity Stress in Tomato Roots
title_fullStr Proteasome Activity Profiling Uncovers Alteration of Catalytic β2 and β5 Subunits of the Stress-Induced Proteasome during Salinity Stress in Tomato Roots
title_full_unstemmed Proteasome Activity Profiling Uncovers Alteration of Catalytic β2 and β5 Subunits of the Stress-Induced Proteasome during Salinity Stress in Tomato Roots
title_short Proteasome Activity Profiling Uncovers Alteration of Catalytic β2 and β5 Subunits of the Stress-Induced Proteasome during Salinity Stress in Tomato Roots
title_sort proteasome activity profiling uncovers alteration of catalytic β2 and β5 subunits of the stress-induced proteasome during salinity stress in tomato roots
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5289967/
https://www.ncbi.nlm.nih.gov/pubmed/28217134
http://dx.doi.org/10.3389/fpls.2017.00107
work_keys_str_mv AT kovacsjudit proteasomeactivityprofilinguncoversalterationofcatalyticb2andb5subunitsofthestressinducedproteasomeduringsalinitystressintomatoroots
AT poorpeter proteasomeactivityprofilinguncoversalterationofcatalyticb2andb5subunitsofthestressinducedproteasomeduringsalinitystressintomatoroots
AT kaschanifarnusch proteasomeactivityprofilinguncoversalterationofcatalyticb2andb5subunitsofthestressinducedproteasomeduringsalinitystressintomatoroots
AT chandrasekarbalakumaran proteasomeactivityprofilinguncoversalterationofcatalyticb2andb5subunitsofthestressinducedproteasomeduringsalinitystressintomatoroots
AT hongtramn proteasomeactivityprofilinguncoversalterationofcatalyticb2andb5subunitsofthestressinducedproteasomeduringsalinitystressintomatoroots
AT misasvillamiljohanac proteasomeactivityprofilinguncoversalterationofcatalyticb2andb5subunitsofthestressinducedproteasomeduringsalinitystressintomatoroots
AT xinbot proteasomeactivityprofilinguncoversalterationofcatalyticb2andb5subunitsofthestressinducedproteasomeduringsalinitystressintomatoroots
AT kaisermarkus proteasomeactivityprofilinguncoversalterationofcatalyticb2andb5subunitsofthestressinducedproteasomeduringsalinitystressintomatoroots
AT overkleefthermans proteasomeactivityprofilinguncoversalterationofcatalyticb2andb5subunitsofthestressinducedproteasomeduringsalinitystressintomatoroots
AT tariirma proteasomeactivityprofilinguncoversalterationofcatalyticb2andb5subunitsofthestressinducedproteasomeduringsalinitystressintomatoroots
AT vanderhoornrenieral proteasomeactivityprofilinguncoversalterationofcatalyticb2andb5subunitsofthestressinducedproteasomeduringsalinitystressintomatoroots