RRC ID 37710
Author Ito H, Kuno A, Sawaki H, Sogabe M, Ozaki H, Tanaka Y, Mizokami M, Shoda J, Angata T, Sato T, Hirabayashi J, Ikehara Y, Narimatsu H.
Title Strategy for glycoproteomics: identification of glyco-alteration using multiple glycan profiling tools.
Journal J Proteome Res
Abstract Glycan alterations of proteins, a common feature of cancer cells, are associated with carcinogenesis, invasion and metastasis. Glycomics, the study of glycans and glycan-binding proteins in various biological systems, is an emerging field in the postgenome and postproteomics era. However, systematic and robust strategies for glycomics are still not fully established because the structural analysis of glycans, which comprise different patterns of branching, various possible linkage positions as well as monomer anomericity, is technically difficult. Here, we introduce a new strategy for glyco-alteration analysis of glycoproteins by using multiple glycan profiling tools. To understand glycan alterations of proteins by correlating the glycosyltransferase expression profile with the actual glycan structure, we systematically used three glycan profiling tools: (1) multiplex quantitative PCR (qPCR) array format for profiling the expression pattern of glycogenes, (2) lectin microarray as a multiplex glycan-lectin interaction analysis system for profiling either a pool of cell glycoproteins or a target glycoprotein, and (3) tandem mass spectrometry for identifying the glycan structure connected to a target glycoprotein. Using our system, we successfully identified glycan alterations on alpha-fetoprotein (AFP), including a novel LacdiNAc structure in addition to previously reported alterations such as alpha1,6 fucosylation.
Volume 8(3)
Pages 1358-67
Published 2009-3-1
DOI 10.1021/pr800735j
PMID 19178301
MeSH Cell Line Glycomics / methods* Glycoproteins / analysis* Humans Lectins / analysis* Polysaccharides / analysis* Tandem Mass Spectrometry alpha-Fetoproteins / metabolism*
IF 4.074
Times Cited 55
WOS Category BIOCHEMICAL RESEARCH METHODS
Resource
Human and Animal Cells HuH-7(RCB1366)