| Literature DB >> 27760464 |
Ju Yeon Lee1, Hyun Kyoung Lee1,2, Gun Wook Park1,2, Heeyoun Hwang1, Hoi Keun Jeong1,2, Ki Na Yun1,3, Eun Sun Ji1,4, Kwang Hoe Kim1,2, Jun Seok Kim5, Jong Won Kim6, Sung Ho Yun7, Chi-Won Choi7, Seung Il Kim7, Jong-Sun Lim8, Seul-Ki Jeong8, Young-Ki Paik8, Soo-Youn Lee9,10, Jisook Park11, Su Yeon Kim12, Young-Jin Choi13, Yong-In Kim13, Jawon Seo13, Je-Yoel Cho13, Myoung Jin Oh2, Nari Seo2, Hyun Joo An2, Jin Young Kim1, Jong Shin Yoo1,2.
Abstract
Glycoprotein conformations are complex and heterogeneous. Currently, site-specific characterization of glycopeptides is a challenge. We sought to establish an efficient method of N-glycoprotein characterization using mass spectrometry (MS). Using alpha-1-acid glycoprotein (AGP) as a model N-glycoprotein, we identified its tryptic N-glycopeptides and examined the data reproducibility in seven laboratories running different LC-MS/MS platforms. We used three test samples and one blind sample to evaluate instrument performance with entire sample preparation workflow. 165 site-specific N-glycopeptides representative of all N-glycosylation sites were identified from AGP 1 and AGP 2 isoforms. The glycopeptide fragmentations by collision-induced dissociation or higher-energy collisional dissociation (HCD) varied based on the MS analyzer. Orbitrap Elite identified the greatest number of AGP N-glycopeptides, followed by Triple TOF and Q-Exactive Plus. Reproducible generation of oxonium ions, glycan-cleaved glycopeptide fragment ions, and peptide backbone fragment ions was essential for successful identification. Laboratory proficiency affected the number of identified N-glycopeptides. The relative quantities of the 10 major N-glycopeptide isoforms of AGP detected in four laboratories were compared to assess reproducibility. Quantitative analysis showed that the coefficient of variation was <25% for all test samples. Our analytical protocol yielded identification and quantification of site-specific N-glycopeptide isoforms of AGP from control and disease plasma sample.Entities:
Keywords: PTM (post translational modification); interlaboratory study; isoforms; site-specific N-glycopeptide
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Year: 2016 PMID: 27760464 DOI: 10.1021/acs.jproteome.5b01159
Source DB: PubMed Journal: J Proteome Res ISSN: 1535-3893 Impact factor: 4.466