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Comprehensive quali-quantitative profiling of neutral and sialylated O-glycome by mass spectrometry based on oligosaccharide metabolic engineering and isotopic labeling

Mass spectrometry (MS) analysis combined with stable isotopic labeling is of great importance for quantitatively profiling abnormal sialylated O-glycans associated with disease development, but technically hindered by the poor releasing efficiency of O-glycans from glycoprotein or the labile nature...

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Detalles Bibliográficos
Autores principales: Nan, Lijing, Li, Jiao, Jin, Wanjun, Wei, Ming, Tang, Mengjun, Wang, Chengjian, Gong, Guiping, Huang, Linjuan, Zhang, Ying, Wang, Zhongfu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9064288/
https://www.ncbi.nlm.nih.gov/pubmed/35521403
http://dx.doi.org/10.1039/c9ra01114e
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author Nan, Lijing
Li, Jiao
Jin, Wanjun
Wei, Ming
Tang, Mengjun
Wang, Chengjian
Gong, Guiping
Huang, Linjuan
Zhang, Ying
Wang, Zhongfu
author_facet Nan, Lijing
Li, Jiao
Jin, Wanjun
Wei, Ming
Tang, Mengjun
Wang, Chengjian
Gong, Guiping
Huang, Linjuan
Zhang, Ying
Wang, Zhongfu
author_sort Nan, Lijing
collection PubMed
description Mass spectrometry (MS) analysis combined with stable isotopic labeling is of great importance for quantitatively profiling abnormal sialylated O-glycans associated with disease development, but technically hindered by the poor releasing efficiency of O-glycans from glycoprotein or the labile nature of sialic acid residues at glycans. Herein, we developed an isotopic precursor based metabolic amplification and labeling (IPMAL) technique for relative quantitative profiling of the repertoire O-glycans between normal and tumor cells by ESI-MS. Two groups of cells were incubated with peracetylated benzyl-α-N-acetylgalactosamine (Ac(3)GalNAc-α-Bn(d0)) or a heavy labeled peracetylated benzyl-α-N-acetylgalactosamine (Ac(3)GalNAc-α-Bn(d5)) precursor respectively to amplify the repertoire of O-glycans as Bn(d0/d5)-O-glycans which could achieve the quantitative O-glycome analysis by ESI-MS after derivatization. The established method demonstrates desirable feasibility, accuracy (relative error (RE) ≤ 4.20%), reproducibility (coefficient of variation (CV) ≤ 7.61%, n = 3) and good quantitation linearity (R(2) > 0.99, n = 3) for five Bn-O-glycans with 2 orders of magnitude. Finally, the method has been successfully applied to quantitative analysis of the repertoire O-glycome changes between normal human liver cell line L02 and human hepatoma cell line SMMC-7721. Moreover, the α-2,3/2,6 sialic acid isomers of Bn-O-glycans from these two cells have been further quantitatively distinguished when involved a sialic acid specific derivatization procedure.
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spelling pubmed-90642882022-05-04 Comprehensive quali-quantitative profiling of neutral and sialylated O-glycome by mass spectrometry based on oligosaccharide metabolic engineering and isotopic labeling Nan, Lijing Li, Jiao Jin, Wanjun Wei, Ming Tang, Mengjun Wang, Chengjian Gong, Guiping Huang, Linjuan Zhang, Ying Wang, Zhongfu RSC Adv Chemistry Mass spectrometry (MS) analysis combined with stable isotopic labeling is of great importance for quantitatively profiling abnormal sialylated O-glycans associated with disease development, but technically hindered by the poor releasing efficiency of O-glycans from glycoprotein or the labile nature of sialic acid residues at glycans. Herein, we developed an isotopic precursor based metabolic amplification and labeling (IPMAL) technique for relative quantitative profiling of the repertoire O-glycans between normal and tumor cells by ESI-MS. Two groups of cells were incubated with peracetylated benzyl-α-N-acetylgalactosamine (Ac(3)GalNAc-α-Bn(d0)) or a heavy labeled peracetylated benzyl-α-N-acetylgalactosamine (Ac(3)GalNAc-α-Bn(d5)) precursor respectively to amplify the repertoire of O-glycans as Bn(d0/d5)-O-glycans which could achieve the quantitative O-glycome analysis by ESI-MS after derivatization. The established method demonstrates desirable feasibility, accuracy (relative error (RE) ≤ 4.20%), reproducibility (coefficient of variation (CV) ≤ 7.61%, n = 3) and good quantitation linearity (R(2) > 0.99, n = 3) for five Bn-O-glycans with 2 orders of magnitude. Finally, the method has been successfully applied to quantitative analysis of the repertoire O-glycome changes between normal human liver cell line L02 and human hepatoma cell line SMMC-7721. Moreover, the α-2,3/2,6 sialic acid isomers of Bn-O-glycans from these two cells have been further quantitatively distinguished when involved a sialic acid specific derivatization procedure. The Royal Society of Chemistry 2019-05-20 /pmc/articles/PMC9064288/ /pubmed/35521403 http://dx.doi.org/10.1039/c9ra01114e Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Nan, Lijing
Li, Jiao
Jin, Wanjun
Wei, Ming
Tang, Mengjun
Wang, Chengjian
Gong, Guiping
Huang, Linjuan
Zhang, Ying
Wang, Zhongfu
Comprehensive quali-quantitative profiling of neutral and sialylated O-glycome by mass spectrometry based on oligosaccharide metabolic engineering and isotopic labeling
title Comprehensive quali-quantitative profiling of neutral and sialylated O-glycome by mass spectrometry based on oligosaccharide metabolic engineering and isotopic labeling
title_full Comprehensive quali-quantitative profiling of neutral and sialylated O-glycome by mass spectrometry based on oligosaccharide metabolic engineering and isotopic labeling
title_fullStr Comprehensive quali-quantitative profiling of neutral and sialylated O-glycome by mass spectrometry based on oligosaccharide metabolic engineering and isotopic labeling
title_full_unstemmed Comprehensive quali-quantitative profiling of neutral and sialylated O-glycome by mass spectrometry based on oligosaccharide metabolic engineering and isotopic labeling
title_short Comprehensive quali-quantitative profiling of neutral and sialylated O-glycome by mass spectrometry based on oligosaccharide metabolic engineering and isotopic labeling
title_sort comprehensive quali-quantitative profiling of neutral and sialylated o-glycome by mass spectrometry based on oligosaccharide metabolic engineering and isotopic labeling
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9064288/
https://www.ncbi.nlm.nih.gov/pubmed/35521403
http://dx.doi.org/10.1039/c9ra01114e
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