| Literature DB >> 27480293 |
Chengqian Zhang1,2, Zilu Ye1,2, Peng Xue1, Qingbo Shu1,2, Yue Zhou1,2, Yanlong Ji1,2, Ying Fu1,2, Jifeng Wang1, Fuquan Yang1,2.
Abstract
N-Glycosylation of proteins plays a critical role in many biological pathways. Because highly heterogeneous N-glycopeptides are present in biological sources, the enrichment procedure is a crucial step for mass spectrometry analysis. Five enrichment methods, including IP-ZIC-HILIC, hydrazide chemistry, lectin affinity, ZIC-HILIC-FA, and TiO2 affinity were evaluated and compared in the study of mapping N-glycosylation sites in mouse brain. On the basis of our results, the identified N-glycosylation sites were 1891, 1241, 891, 869, and 710 and the FDR values were 3.29, 5.62, 9.54, 9.54, and 20.02%, respectively. Therefore, IP-ZIC-HILIC enrichment method displayed the highest sensitivity and specificity. In this work, we identified a total of 3446 unique glycosylation sites conforming to the N-glycosylation consensus motif (N-X-T/S/C; X ≠ P) with (18)O labeling in 1597 N-glycoproteins. N-glycosylation site information was used to confirm or correct the transmembrane topology of the 57 novel transmembrane N-glycoproteins.Entities:
Keywords: N-glycosylation sites; TiO2; ZIC-HILIC; hydrazide; lectins; mouse brain
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Year: 2016 PMID: 27480293 DOI: 10.1021/acs.jproteome.6b00098
Source DB: PubMed Journal: J Proteome Res ISSN: 1535-3893 Impact factor: 4.466