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Proteomic Profiling of Emiliania huxleyi Using a Three-Dimensional Separation Method Combined with Tandem Mass Spectrometry

Emiliania huxleyi is one of the most abundant marine planktons, and it has a crucial feature in the carbon cycle. However, proteomic analyses of Emiliania huxleyi have not been done extensively. In this study, a three-dimensional liquid chromatography (3D-LC) system consisting of strong cation excha...

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Autores principales: Yun, Goyeun, Park, Jong-Moon, Duong, Van-An, Mok, Jeong-Hun, Jeon, Jongho, Nam, Onyou, Lee, Joonwon, Jin, EonSeon, Lee, Hookeun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7411631/
https://www.ncbi.nlm.nih.gov/pubmed/32630776
http://dx.doi.org/10.3390/molecules25133028
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author Yun, Goyeun
Park, Jong-Moon
Duong, Van-An
Mok, Jeong-Hun
Jeon, Jongho
Nam, Onyou
Lee, Joonwon
Jin, EonSeon
Lee, Hookeun
author_facet Yun, Goyeun
Park, Jong-Moon
Duong, Van-An
Mok, Jeong-Hun
Jeon, Jongho
Nam, Onyou
Lee, Joonwon
Jin, EonSeon
Lee, Hookeun
author_sort Yun, Goyeun
collection PubMed
description Emiliania huxleyi is one of the most abundant marine planktons, and it has a crucial feature in the carbon cycle. However, proteomic analyses of Emiliania huxleyi have not been done extensively. In this study, a three-dimensional liquid chromatography (3D-LC) system consisting of strong cation exchange, high- and low-pH reversed-phase liquid chromatography was established for in-depth proteomic profiling of Emiliania huxleyi. From tryptic proteome digest, 70 fractions were generated and analyzed using liquid chromatography-tandem mass spectrometry. In total, more than 84,000 unique peptides and 10,000 proteins groups were identified with a false discovery rate of ≤0.01. The physicochemical properties of the identified peptides were evaluated. Using ClueGO, approximately 700 gene ontology terms and 15 pathways were defined from the identified protein groups with p-value ≤0.05, covering a wide range of biological processes, cellular components, and molecular functions. Many biological processes associated with CO(2) fixation, photosynthesis, biosynthesis, and metabolic process were identified. Various molecular functions relating to protein binding and enzyme activities were also found. The 3D-LC strategy is a powerful approach for comparative proteomic studies on Emiliania huxleyi to reveal changes in its protein level and related mechanism.
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spelling pubmed-74116312020-08-17 Proteomic Profiling of Emiliania huxleyi Using a Three-Dimensional Separation Method Combined with Tandem Mass Spectrometry Yun, Goyeun Park, Jong-Moon Duong, Van-An Mok, Jeong-Hun Jeon, Jongho Nam, Onyou Lee, Joonwon Jin, EonSeon Lee, Hookeun Molecules Article Emiliania huxleyi is one of the most abundant marine planktons, and it has a crucial feature in the carbon cycle. However, proteomic analyses of Emiliania huxleyi have not been done extensively. In this study, a three-dimensional liquid chromatography (3D-LC) system consisting of strong cation exchange, high- and low-pH reversed-phase liquid chromatography was established for in-depth proteomic profiling of Emiliania huxleyi. From tryptic proteome digest, 70 fractions were generated and analyzed using liquid chromatography-tandem mass spectrometry. In total, more than 84,000 unique peptides and 10,000 proteins groups were identified with a false discovery rate of ≤0.01. The physicochemical properties of the identified peptides were evaluated. Using ClueGO, approximately 700 gene ontology terms and 15 pathways were defined from the identified protein groups with p-value ≤0.05, covering a wide range of biological processes, cellular components, and molecular functions. Many biological processes associated with CO(2) fixation, photosynthesis, biosynthesis, and metabolic process were identified. Various molecular functions relating to protein binding and enzyme activities were also found. The 3D-LC strategy is a powerful approach for comparative proteomic studies on Emiliania huxleyi to reveal changes in its protein level and related mechanism. MDPI 2020-07-02 /pmc/articles/PMC7411631/ /pubmed/32630776 http://dx.doi.org/10.3390/molecules25133028 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Yun, Goyeun
Park, Jong-Moon
Duong, Van-An
Mok, Jeong-Hun
Jeon, Jongho
Nam, Onyou
Lee, Joonwon
Jin, EonSeon
Lee, Hookeun
Proteomic Profiling of Emiliania huxleyi Using a Three-Dimensional Separation Method Combined with Tandem Mass Spectrometry
title Proteomic Profiling of Emiliania huxleyi Using a Three-Dimensional Separation Method Combined with Tandem Mass Spectrometry
title_full Proteomic Profiling of Emiliania huxleyi Using a Three-Dimensional Separation Method Combined with Tandem Mass Spectrometry
title_fullStr Proteomic Profiling of Emiliania huxleyi Using a Three-Dimensional Separation Method Combined with Tandem Mass Spectrometry
title_full_unstemmed Proteomic Profiling of Emiliania huxleyi Using a Three-Dimensional Separation Method Combined with Tandem Mass Spectrometry
title_short Proteomic Profiling of Emiliania huxleyi Using a Three-Dimensional Separation Method Combined with Tandem Mass Spectrometry
title_sort proteomic profiling of emiliania huxleyi using a three-dimensional separation method combined with tandem mass spectrometry
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7411631/
https://www.ncbi.nlm.nih.gov/pubmed/32630776
http://dx.doi.org/10.3390/molecules25133028
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