Cargando…

Identification and Analysis of the Acetylated Status of Poplar Proteins Reveals Analogous N-Terminal Protein Processing Mechanisms with Other Eukaryotes

BACKGROUND: The N-terminal protein processing mechanism (NPM) including N-terminal Met excision (NME) and N-terminal acetylation (N(α)-acetylation) represents a common protein co-translational process of some eukaryotes. However, this NPM occurred in woody plants yet remains unknown. METHODOLOGY/PRI...

Descripción completa

Detalles Bibliográficos
Autores principales: Liu, Chang-Cai, Zhu, Hang-Yong, Dong, Xiu-Mei, Ning, De-Li, Wang, Hong-Xia, Li, Wei-Hua, Yang, Chuan-Ping, Wang, Bai-Chen
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3594182/
https://www.ncbi.nlm.nih.gov/pubmed/23536812
http://dx.doi.org/10.1371/journal.pone.0058681
_version_ 1782262298101940224
author Liu, Chang-Cai
Zhu, Hang-Yong
Dong, Xiu-Mei
Ning, De-Li
Wang, Hong-Xia
Li, Wei-Hua
Yang, Chuan-Ping
Wang, Bai-Chen
author_facet Liu, Chang-Cai
Zhu, Hang-Yong
Dong, Xiu-Mei
Ning, De-Li
Wang, Hong-Xia
Li, Wei-Hua
Yang, Chuan-Ping
Wang, Bai-Chen
author_sort Liu, Chang-Cai
collection PubMed
description BACKGROUND: The N-terminal protein processing mechanism (NPM) including N-terminal Met excision (NME) and N-terminal acetylation (N(α)-acetylation) represents a common protein co-translational process of some eukaryotes. However, this NPM occurred in woody plants yet remains unknown. METHODOLOGY/PRINCIPAL FINDINGS: To reveal the NPM in poplar, we investigated the N(α)-acetylation status of poplar proteins during dormancy by combining tandem mass spectrometry with TiO(2) enrichment of acetylated peptides. We identified 58 N-terminally acetylated (N(α)-acetylated) proteins. Most proteins (47, >81%) are subjected to N(α)-acetylation following the N-terminal removal of Met, indicating that N(α)-acetylation and NME represent a common NPM of poplar proteins. Furthermore, we confirm that poplar shares the analogous NME and N(α)-acetylation (NPM) to other eukaryotes according to analysis of N-terminal features of these acetylated proteins combined with genome-wide identification of the involving methionine aminopeptidases (MAPs) and N-terminal acetyltransferase (Nat) enzymes in poplar. The N(α)-acetylated reactions and the involving enzymes of these poplar proteins are also identified based on those of yeast and human, as well as the subcellular location information of these poplar proteins. CONCLUSIONS/SIGNIFICANCE: This study represents the first extensive investigation of N(α)-acetylation events in woody plants, the results of which will provide useful resources for future unraveling the regulatory mechanisms of N(α)-acetylation of proteins in poplar.
format Online
Article
Text
id pubmed-3594182
institution National Center for Biotechnology Information
language English
publishDate 2013
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-35941822013-03-27 Identification and Analysis of the Acetylated Status of Poplar Proteins Reveals Analogous N-Terminal Protein Processing Mechanisms with Other Eukaryotes Liu, Chang-Cai Zhu, Hang-Yong Dong, Xiu-Mei Ning, De-Li Wang, Hong-Xia Li, Wei-Hua Yang, Chuan-Ping Wang, Bai-Chen PLoS One Research Article BACKGROUND: The N-terminal protein processing mechanism (NPM) including N-terminal Met excision (NME) and N-terminal acetylation (N(α)-acetylation) represents a common protein co-translational process of some eukaryotes. However, this NPM occurred in woody plants yet remains unknown. METHODOLOGY/PRINCIPAL FINDINGS: To reveal the NPM in poplar, we investigated the N(α)-acetylation status of poplar proteins during dormancy by combining tandem mass spectrometry with TiO(2) enrichment of acetylated peptides. We identified 58 N-terminally acetylated (N(α)-acetylated) proteins. Most proteins (47, >81%) are subjected to N(α)-acetylation following the N-terminal removal of Met, indicating that N(α)-acetylation and NME represent a common NPM of poplar proteins. Furthermore, we confirm that poplar shares the analogous NME and N(α)-acetylation (NPM) to other eukaryotes according to analysis of N-terminal features of these acetylated proteins combined with genome-wide identification of the involving methionine aminopeptidases (MAPs) and N-terminal acetyltransferase (Nat) enzymes in poplar. The N(α)-acetylated reactions and the involving enzymes of these poplar proteins are also identified based on those of yeast and human, as well as the subcellular location information of these poplar proteins. CONCLUSIONS/SIGNIFICANCE: This study represents the first extensive investigation of N(α)-acetylation events in woody plants, the results of which will provide useful resources for future unraveling the regulatory mechanisms of N(α)-acetylation of proteins in poplar. Public Library of Science 2013-03-11 /pmc/articles/PMC3594182/ /pubmed/23536812 http://dx.doi.org/10.1371/journal.pone.0058681 Text en © 2013 Liu 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, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Liu, Chang-Cai
Zhu, Hang-Yong
Dong, Xiu-Mei
Ning, De-Li
Wang, Hong-Xia
Li, Wei-Hua
Yang, Chuan-Ping
Wang, Bai-Chen
Identification and Analysis of the Acetylated Status of Poplar Proteins Reveals Analogous N-Terminal Protein Processing Mechanisms with Other Eukaryotes
title Identification and Analysis of the Acetylated Status of Poplar Proteins Reveals Analogous N-Terminal Protein Processing Mechanisms with Other Eukaryotes
title_full Identification and Analysis of the Acetylated Status of Poplar Proteins Reveals Analogous N-Terminal Protein Processing Mechanisms with Other Eukaryotes
title_fullStr Identification and Analysis of the Acetylated Status of Poplar Proteins Reveals Analogous N-Terminal Protein Processing Mechanisms with Other Eukaryotes
title_full_unstemmed Identification and Analysis of the Acetylated Status of Poplar Proteins Reveals Analogous N-Terminal Protein Processing Mechanisms with Other Eukaryotes
title_short Identification and Analysis of the Acetylated Status of Poplar Proteins Reveals Analogous N-Terminal Protein Processing Mechanisms with Other Eukaryotes
title_sort identification and analysis of the acetylated status of poplar proteins reveals analogous n-terminal protein processing mechanisms with other eukaryotes
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3594182/
https://www.ncbi.nlm.nih.gov/pubmed/23536812
http://dx.doi.org/10.1371/journal.pone.0058681
work_keys_str_mv AT liuchangcai identificationandanalysisoftheacetylatedstatusofpoplarproteinsrevealsanalogousnterminalproteinprocessingmechanismswithothereukaryotes
AT zhuhangyong identificationandanalysisoftheacetylatedstatusofpoplarproteinsrevealsanalogousnterminalproteinprocessingmechanismswithothereukaryotes
AT dongxiumei identificationandanalysisoftheacetylatedstatusofpoplarproteinsrevealsanalogousnterminalproteinprocessingmechanismswithothereukaryotes
AT ningdeli identificationandanalysisoftheacetylatedstatusofpoplarproteinsrevealsanalogousnterminalproteinprocessingmechanismswithothereukaryotes
AT wanghongxia identificationandanalysisoftheacetylatedstatusofpoplarproteinsrevealsanalogousnterminalproteinprocessingmechanismswithothereukaryotes
AT liweihua identificationandanalysisoftheacetylatedstatusofpoplarproteinsrevealsanalogousnterminalproteinprocessingmechanismswithothereukaryotes
AT yangchuanping identificationandanalysisoftheacetylatedstatusofpoplarproteinsrevealsanalogousnterminalproteinprocessingmechanismswithothereukaryotes
AT wangbaichen identificationandanalysisoftheacetylatedstatusofpoplarproteinsrevealsanalogousnterminalproteinprocessingmechanismswithothereukaryotes