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Comprehensive Evaluation of Different TiO(2)-Based Phosphopeptide Enrichment and Fractionation Methods for Phosphoproteomics

Protein phosphorylation is an essential post-translational modification that regulates multiple cellular processes. Due to their low stoichiometry and ionization efficiency, it is critical to efficiently enrich phosphopeptides for phosphoproteomics. Several phosphopeptide enrichment methods have bee...

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Autores principales: Li, Jiaran, Wang, Jifeng, Yan, Yumeng, Li, Na, Qing, Xiaoqing, Tuerxun, Ailikemu, Guo, Xiaojing, Chen, Xiulan, Yang, Fuquan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9265536/
https://www.ncbi.nlm.nih.gov/pubmed/35805136
http://dx.doi.org/10.3390/cells11132047
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author Li, Jiaran
Wang, Jifeng
Yan, Yumeng
Li, Na
Qing, Xiaoqing
Tuerxun, Ailikemu
Guo, Xiaojing
Chen, Xiulan
Yang, Fuquan
author_facet Li, Jiaran
Wang, Jifeng
Yan, Yumeng
Li, Na
Qing, Xiaoqing
Tuerxun, Ailikemu
Guo, Xiaojing
Chen, Xiulan
Yang, Fuquan
author_sort Li, Jiaran
collection PubMed
description Protein phosphorylation is an essential post-translational modification that regulates multiple cellular processes. Due to their low stoichiometry and ionization efficiency, it is critical to efficiently enrich phosphopeptides for phosphoproteomics. Several phosphopeptide enrichment methods have been reported; however, few studies have comprehensively compared different TiO(2)-based phosphopeptide enrichment methods using complex proteomic samples. Here, we compared four TiO(2)-based phosphopeptide enrichment methods that used four non-phosphopeptide excluders (glutamic acid, lactic acid, glycolic acid, and DHB). We found that these four TiO(2)-based phosphopeptide enrichment methods had different enrichment specificities and that phosphopeptides enriched by the four methods had different physicochemical characteristics. More importantly, we discovered that phosphopeptides had a higher deamidation ratio than peptides from cell lysate and that phosphopeptides enriched using the glutamic acid method had a higher deamidation ratio than the other three methods. We then compared two phosphopeptide fractionation methods: ammonia- or TEA-based high pH reversed-phase (HpH-RP). We found that fewer phosphopeptides, especially multi-phosphorylated peptides, were identified using the ammonia-based method than using the TEA-based method. Therefore, the TEA-based HpH-RP fractionation method performed better than the ammonia method. In conclusion, we comprehensively evaluated different TiO(2)-based phosphopeptide enrichment and fractionation methods, providing a basis for selecting the proper protocols for comprehensive phosphoproteomics.
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spelling pubmed-92655362022-07-09 Comprehensive Evaluation of Different TiO(2)-Based Phosphopeptide Enrichment and Fractionation Methods for Phosphoproteomics Li, Jiaran Wang, Jifeng Yan, Yumeng Li, Na Qing, Xiaoqing Tuerxun, Ailikemu Guo, Xiaojing Chen, Xiulan Yang, Fuquan Cells Article Protein phosphorylation is an essential post-translational modification that regulates multiple cellular processes. Due to their low stoichiometry and ionization efficiency, it is critical to efficiently enrich phosphopeptides for phosphoproteomics. Several phosphopeptide enrichment methods have been reported; however, few studies have comprehensively compared different TiO(2)-based phosphopeptide enrichment methods using complex proteomic samples. Here, we compared four TiO(2)-based phosphopeptide enrichment methods that used four non-phosphopeptide excluders (glutamic acid, lactic acid, glycolic acid, and DHB). We found that these four TiO(2)-based phosphopeptide enrichment methods had different enrichment specificities and that phosphopeptides enriched by the four methods had different physicochemical characteristics. More importantly, we discovered that phosphopeptides had a higher deamidation ratio than peptides from cell lysate and that phosphopeptides enriched using the glutamic acid method had a higher deamidation ratio than the other three methods. We then compared two phosphopeptide fractionation methods: ammonia- or TEA-based high pH reversed-phase (HpH-RP). We found that fewer phosphopeptides, especially multi-phosphorylated peptides, were identified using the ammonia-based method than using the TEA-based method. Therefore, the TEA-based HpH-RP fractionation method performed better than the ammonia method. In conclusion, we comprehensively evaluated different TiO(2)-based phosphopeptide enrichment and fractionation methods, providing a basis for selecting the proper protocols for comprehensive phosphoproteomics. MDPI 2022-06-28 /pmc/articles/PMC9265536/ /pubmed/35805136 http://dx.doi.org/10.3390/cells11132047 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Li, Jiaran
Wang, Jifeng
Yan, Yumeng
Li, Na
Qing, Xiaoqing
Tuerxun, Ailikemu
Guo, Xiaojing
Chen, Xiulan
Yang, Fuquan
Comprehensive Evaluation of Different TiO(2)-Based Phosphopeptide Enrichment and Fractionation Methods for Phosphoproteomics
title Comprehensive Evaluation of Different TiO(2)-Based Phosphopeptide Enrichment and Fractionation Methods for Phosphoproteomics
title_full Comprehensive Evaluation of Different TiO(2)-Based Phosphopeptide Enrichment and Fractionation Methods for Phosphoproteomics
title_fullStr Comprehensive Evaluation of Different TiO(2)-Based Phosphopeptide Enrichment and Fractionation Methods for Phosphoproteomics
title_full_unstemmed Comprehensive Evaluation of Different TiO(2)-Based Phosphopeptide Enrichment and Fractionation Methods for Phosphoproteomics
title_short Comprehensive Evaluation of Different TiO(2)-Based Phosphopeptide Enrichment and Fractionation Methods for Phosphoproteomics
title_sort comprehensive evaluation of different tio(2)-based phosphopeptide enrichment and fractionation methods for phosphoproteomics
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9265536/
https://www.ncbi.nlm.nih.gov/pubmed/35805136
http://dx.doi.org/10.3390/cells11132047
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