Cargando…

Specific pools of endogenous peptides are present in gametophore, protonema, and protoplast cells of the moss Physcomitrella patens

BACKGROUND: Protein degradation is a basic cell process that operates in general protein turnover or to produce bioactive peptides. However, very little is known about the qualitative and quantitative composition of a plant cell peptidome, the actual result of this degradation. In this study we comp...

Descripción completa

Detalles Bibliográficos
Autores principales: Fesenko, Igor A, Arapidi, Georgij P, Skripnikov, Alexander Yu, Alexeev, Dmitry G, Kostryukova, Elena S, Manolov, Alexander I, Altukhov, Ilya A, Khazigaleeva, Regina A, Seredina, Anna V, Kovalchuk, Sergey I, Ziganshin, Rustam H, Zgoda, Viktor G, Novikova, Svetlana E, Semashko, Tatiana A, Slizhikova, Darya K, Ptushenko, Vasilij V, Gorbachev, Alexey Y, Govorun, Vadim M, Ivanov, Vadim T
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4365561/
https://www.ncbi.nlm.nih.gov/pubmed/25848929
http://dx.doi.org/10.1186/s12870-015-0468-7
_version_ 1782362239653642240
author Fesenko, Igor A
Arapidi, Georgij P
Skripnikov, Alexander Yu
Alexeev, Dmitry G
Kostryukova, Elena S
Manolov, Alexander I
Altukhov, Ilya A
Khazigaleeva, Regina A
Seredina, Anna V
Kovalchuk, Sergey I
Ziganshin, Rustam H
Zgoda, Viktor G
Novikova, Svetlana E
Semashko, Tatiana A
Slizhikova, Darya K
Ptushenko, Vasilij V
Gorbachev, Alexey Y
Govorun, Vadim M
Ivanov, Vadim T
author_facet Fesenko, Igor A
Arapidi, Georgij P
Skripnikov, Alexander Yu
Alexeev, Dmitry G
Kostryukova, Elena S
Manolov, Alexander I
Altukhov, Ilya A
Khazigaleeva, Regina A
Seredina, Anna V
Kovalchuk, Sergey I
Ziganshin, Rustam H
Zgoda, Viktor G
Novikova, Svetlana E
Semashko, Tatiana A
Slizhikova, Darya K
Ptushenko, Vasilij V
Gorbachev, Alexey Y
Govorun, Vadim M
Ivanov, Vadim T
author_sort Fesenko, Igor A
collection PubMed
description BACKGROUND: Protein degradation is a basic cell process that operates in general protein turnover or to produce bioactive peptides. However, very little is known about the qualitative and quantitative composition of a plant cell peptidome, the actual result of this degradation. In this study we comprehensively analyzed a plant cell peptidome and systematically analyzed the peptide generation process. RESULTS: We thoroughly analyzed native peptide pools of Physcomitrella patens moss in two developmental stages as well as in protoplasts. Peptidomic analysis was supplemented by transcriptional profiling and quantitative analysis of precursor proteins. In total, over 20,000 unique endogenous peptides, ranging in size from 5 to 78 amino acid residues, were identified. We showed that in both the protonema and protoplast states, plastid proteins served as the main source of peptides and that their major fraction formed outside of chloroplasts. However, in general, the composition of peptide pools was very different between these cell types. In gametophores, stress-related proteins, e.g., late embryogenesis abundant proteins, were among the most productive precursors. The Driselase-mediated protonema conversion to protoplasts led to a peptide generation “burst”, with a several-fold increase in the number of components in the latter. Degradation of plastid proteins in protoplasts was accompanied by suppression of photosynthetic activity. CONCLUSION: We suggest that peptide pools in plant cells are not merely a product of waste protein degradation, but may serve as important functional components for plant metabolism. We assume that the peptide “burst” is a form of biotic stress response that might produce peptides with antimicrobial activity from originally functional proteins. Potential functions of peptides in different developmental stages are discussed. ELECTRONIC SUPPLEMENTARY MATERIAL: The online version of this article (doi:10.1186/s12870-015-0468-7) contains supplementary material, which is available to authorized users.
format Online
Article
Text
id pubmed-4365561
institution National Center for Biotechnology Information
language English
publishDate 2015
publisher BioMed Central
record_format MEDLINE/PubMed
spelling pubmed-43655612015-03-20 Specific pools of endogenous peptides are present in gametophore, protonema, and protoplast cells of the moss Physcomitrella patens Fesenko, Igor A Arapidi, Georgij P Skripnikov, Alexander Yu Alexeev, Dmitry G Kostryukova, Elena S Manolov, Alexander I Altukhov, Ilya A Khazigaleeva, Regina A Seredina, Anna V Kovalchuk, Sergey I Ziganshin, Rustam H Zgoda, Viktor G Novikova, Svetlana E Semashko, Tatiana A Slizhikova, Darya K Ptushenko, Vasilij V Gorbachev, Alexey Y Govorun, Vadim M Ivanov, Vadim T BMC Plant Biol Research Article BACKGROUND: Protein degradation is a basic cell process that operates in general protein turnover or to produce bioactive peptides. However, very little is known about the qualitative and quantitative composition of a plant cell peptidome, the actual result of this degradation. In this study we comprehensively analyzed a plant cell peptidome and systematically analyzed the peptide generation process. RESULTS: We thoroughly analyzed native peptide pools of Physcomitrella patens moss in two developmental stages as well as in protoplasts. Peptidomic analysis was supplemented by transcriptional profiling and quantitative analysis of precursor proteins. In total, over 20,000 unique endogenous peptides, ranging in size from 5 to 78 amino acid residues, were identified. We showed that in both the protonema and protoplast states, plastid proteins served as the main source of peptides and that their major fraction formed outside of chloroplasts. However, in general, the composition of peptide pools was very different between these cell types. In gametophores, stress-related proteins, e.g., late embryogenesis abundant proteins, were among the most productive precursors. The Driselase-mediated protonema conversion to protoplasts led to a peptide generation “burst”, with a several-fold increase in the number of components in the latter. Degradation of plastid proteins in protoplasts was accompanied by suppression of photosynthetic activity. CONCLUSION: We suggest that peptide pools in plant cells are not merely a product of waste protein degradation, but may serve as important functional components for plant metabolism. We assume that the peptide “burst” is a form of biotic stress response that might produce peptides with antimicrobial activity from originally functional proteins. Potential functions of peptides in different developmental stages are discussed. ELECTRONIC SUPPLEMENTARY MATERIAL: The online version of this article (doi:10.1186/s12870-015-0468-7) contains supplementary material, which is available to authorized users. BioMed Central 2015-03-15 /pmc/articles/PMC4365561/ /pubmed/25848929 http://dx.doi.org/10.1186/s12870-015-0468-7 Text en © Fesenko et al.; licensee BioMed Central. 2015 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 work is properly credited. The Creative Commons Public Domain Dedication waiver (http://creativecommons.org/publicdomain/zero/1.0/) applies to the data made available in this article, unless otherwise stated.
spellingShingle Research Article
Fesenko, Igor A
Arapidi, Georgij P
Skripnikov, Alexander Yu
Alexeev, Dmitry G
Kostryukova, Elena S
Manolov, Alexander I
Altukhov, Ilya A
Khazigaleeva, Regina A
Seredina, Anna V
Kovalchuk, Sergey I
Ziganshin, Rustam H
Zgoda, Viktor G
Novikova, Svetlana E
Semashko, Tatiana A
Slizhikova, Darya K
Ptushenko, Vasilij V
Gorbachev, Alexey Y
Govorun, Vadim M
Ivanov, Vadim T
Specific pools of endogenous peptides are present in gametophore, protonema, and protoplast cells of the moss Physcomitrella patens
title Specific pools of endogenous peptides are present in gametophore, protonema, and protoplast cells of the moss Physcomitrella patens
title_full Specific pools of endogenous peptides are present in gametophore, protonema, and protoplast cells of the moss Physcomitrella patens
title_fullStr Specific pools of endogenous peptides are present in gametophore, protonema, and protoplast cells of the moss Physcomitrella patens
title_full_unstemmed Specific pools of endogenous peptides are present in gametophore, protonema, and protoplast cells of the moss Physcomitrella patens
title_short Specific pools of endogenous peptides are present in gametophore, protonema, and protoplast cells of the moss Physcomitrella patens
title_sort specific pools of endogenous peptides are present in gametophore, protonema, and protoplast cells of the moss physcomitrella patens
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4365561/
https://www.ncbi.nlm.nih.gov/pubmed/25848929
http://dx.doi.org/10.1186/s12870-015-0468-7
work_keys_str_mv AT fesenkoigora specificpoolsofendogenouspeptidesarepresentingametophoreprotonemaandprotoplastcellsofthemossphyscomitrellapatens
AT arapidigeorgijp specificpoolsofendogenouspeptidesarepresentingametophoreprotonemaandprotoplastcellsofthemossphyscomitrellapatens
AT skripnikovalexanderyu specificpoolsofendogenouspeptidesarepresentingametophoreprotonemaandprotoplastcellsofthemossphyscomitrellapatens
AT alexeevdmitryg specificpoolsofendogenouspeptidesarepresentingametophoreprotonemaandprotoplastcellsofthemossphyscomitrellapatens
AT kostryukovaelenas specificpoolsofendogenouspeptidesarepresentingametophoreprotonemaandprotoplastcellsofthemossphyscomitrellapatens
AT manolovalexanderi specificpoolsofendogenouspeptidesarepresentingametophoreprotonemaandprotoplastcellsofthemossphyscomitrellapatens
AT altukhovilyaa specificpoolsofendogenouspeptidesarepresentingametophoreprotonemaandprotoplastcellsofthemossphyscomitrellapatens
AT khazigaleevareginaa specificpoolsofendogenouspeptidesarepresentingametophoreprotonemaandprotoplastcellsofthemossphyscomitrellapatens
AT seredinaannav specificpoolsofendogenouspeptidesarepresentingametophoreprotonemaandprotoplastcellsofthemossphyscomitrellapatens
AT kovalchuksergeyi specificpoolsofendogenouspeptidesarepresentingametophoreprotonemaandprotoplastcellsofthemossphyscomitrellapatens
AT ziganshinrustamh specificpoolsofendogenouspeptidesarepresentingametophoreprotonemaandprotoplastcellsofthemossphyscomitrellapatens
AT zgodaviktorg specificpoolsofendogenouspeptidesarepresentingametophoreprotonemaandprotoplastcellsofthemossphyscomitrellapatens
AT novikovasvetlanae specificpoolsofendogenouspeptidesarepresentingametophoreprotonemaandprotoplastcellsofthemossphyscomitrellapatens
AT semashkotatianaa specificpoolsofendogenouspeptidesarepresentingametophoreprotonemaandprotoplastcellsofthemossphyscomitrellapatens
AT slizhikovadaryak specificpoolsofendogenouspeptidesarepresentingametophoreprotonemaandprotoplastcellsofthemossphyscomitrellapatens
AT ptushenkovasilijv specificpoolsofendogenouspeptidesarepresentingametophoreprotonemaandprotoplastcellsofthemossphyscomitrellapatens
AT gorbachevalexeyy specificpoolsofendogenouspeptidesarepresentingametophoreprotonemaandprotoplastcellsofthemossphyscomitrellapatens
AT govorunvadimm specificpoolsofendogenouspeptidesarepresentingametophoreprotonemaandprotoplastcellsofthemossphyscomitrellapatens
AT ivanovvadimt specificpoolsofendogenouspeptidesarepresentingametophoreprotonemaandprotoplastcellsofthemossphyscomitrellapatens