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In-depth mapping of the mouse brain N-glycoproteome reveals widespread N-glycosylation of diverse brain proteins

N-glycosylation is one of the most prominent and abundant posttranslational modifications of proteins. It is estimated that over 50% of mammalian proteins undergo glycosylation. However, the analysis of N-glycoproteins has been limited by the available analytical technology. In this study, we compre...

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Autores principales: Fang, Pan, Wang, Xin-jian, Xue, Yu, Liu, Ming-qi, Zeng, Wen-feng, Zhang, Yang, Zhang, Lei, Gao, Xing, Yan, Guo-quan, Yao, Jun, Shen, Hua-li, Yang, Peng-yuan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5122430/
https://www.ncbi.nlm.nih.gov/pubmed/27259237
http://dx.doi.org/10.18632/oncotarget.9737
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author Fang, Pan
Wang, Xin-jian
Xue, Yu
Liu, Ming-qi
Zeng, Wen-feng
Zhang, Yang
Zhang, Lei
Gao, Xing
Yan, Guo-quan
Yao, Jun
Shen, Hua-li
Yang, Peng-yuan
author_facet Fang, Pan
Wang, Xin-jian
Xue, Yu
Liu, Ming-qi
Zeng, Wen-feng
Zhang, Yang
Zhang, Lei
Gao, Xing
Yan, Guo-quan
Yao, Jun
Shen, Hua-li
Yang, Peng-yuan
author_sort Fang, Pan
collection PubMed
description N-glycosylation is one of the most prominent and abundant posttranslational modifications of proteins. It is estimated that over 50% of mammalian proteins undergo glycosylation. However, the analysis of N-glycoproteins has been limited by the available analytical technology. In this study, we comprehensively mapped the N-glycosylation sites in the mouse brain proteome by combining complementary methods, which included seven protease treatments, four enrichment techniques and two fractionation strategies. Altogether, 13492 N-glycopeptides containing 8386 N-glycosylation sites on 3982 proteins were identified. After evaluating the performance of the above methods, we proposed a simple and efficient workflow for large-scale N-glycosylation site mapping. The optimized workflow yielded 80% of the initially identified N-glycosylation sites with considerably less effort. Analysis of the identified N-glycoproteins revealed that many of the mouse brain proteins are N-glycosylated, including those proteins in critical pathways for nervous system development and neurological disease. Additionally, several important biomarkers of various diseases were found to be N-glycosylated. These data confirm that N-glycosylation is important in both physiological and pathological processes in the brain, and provide useful details about numerous N-glycosylation sites in brain proteins.
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spelling pubmed-51224302016-12-05 In-depth mapping of the mouse brain N-glycoproteome reveals widespread N-glycosylation of diverse brain proteins Fang, Pan Wang, Xin-jian Xue, Yu Liu, Ming-qi Zeng, Wen-feng Zhang, Yang Zhang, Lei Gao, Xing Yan, Guo-quan Yao, Jun Shen, Hua-li Yang, Peng-yuan Oncotarget Research Paper N-glycosylation is one of the most prominent and abundant posttranslational modifications of proteins. It is estimated that over 50% of mammalian proteins undergo glycosylation. However, the analysis of N-glycoproteins has been limited by the available analytical technology. In this study, we comprehensively mapped the N-glycosylation sites in the mouse brain proteome by combining complementary methods, which included seven protease treatments, four enrichment techniques and two fractionation strategies. Altogether, 13492 N-glycopeptides containing 8386 N-glycosylation sites on 3982 proteins were identified. After evaluating the performance of the above methods, we proposed a simple and efficient workflow for large-scale N-glycosylation site mapping. The optimized workflow yielded 80% of the initially identified N-glycosylation sites with considerably less effort. Analysis of the identified N-glycoproteins revealed that many of the mouse brain proteins are N-glycosylated, including those proteins in critical pathways for nervous system development and neurological disease. Additionally, several important biomarkers of various diseases were found to be N-glycosylated. These data confirm that N-glycosylation is important in both physiological and pathological processes in the brain, and provide useful details about numerous N-glycosylation sites in brain proteins. Impact Journals LLC 2016-05-31 /pmc/articles/PMC5122430/ /pubmed/27259237 http://dx.doi.org/10.18632/oncotarget.9737 Text en Copyright: © 2016 Fang et al. http://creativecommons.org/licenses/by/2.5/ 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 credited.
spellingShingle Research Paper
Fang, Pan
Wang, Xin-jian
Xue, Yu
Liu, Ming-qi
Zeng, Wen-feng
Zhang, Yang
Zhang, Lei
Gao, Xing
Yan, Guo-quan
Yao, Jun
Shen, Hua-li
Yang, Peng-yuan
In-depth mapping of the mouse brain N-glycoproteome reveals widespread N-glycosylation of diverse brain proteins
title In-depth mapping of the mouse brain N-glycoproteome reveals widespread N-glycosylation of diverse brain proteins
title_full In-depth mapping of the mouse brain N-glycoproteome reveals widespread N-glycosylation of diverse brain proteins
title_fullStr In-depth mapping of the mouse brain N-glycoproteome reveals widespread N-glycosylation of diverse brain proteins
title_full_unstemmed In-depth mapping of the mouse brain N-glycoproteome reveals widespread N-glycosylation of diverse brain proteins
title_short In-depth mapping of the mouse brain N-glycoproteome reveals widespread N-glycosylation of diverse brain proteins
title_sort in-depth mapping of the mouse brain n-glycoproteome reveals widespread n-glycosylation of diverse brain proteins
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5122430/
https://www.ncbi.nlm.nih.gov/pubmed/27259237
http://dx.doi.org/10.18632/oncotarget.9737
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