4.7 Article

Large-scale Identification of N-Glycosylated Proteins of Mouse Tissues and Construction of a Glycoprotein Database, GlycoProtDB

期刊

JOURNAL OF PROTEOME RESEARCH
卷 11, 期 9, 页码 4553-4566

出版社

AMER CHEMICAL SOC
DOI: 10.1021/pr300346c

关键词

glycoprotein; glycoproteome; lectin; glycosylation site map; LC-MS; GlycoProtDB; mouse; IGOT

资金

  1. NEDO (New Energy and Industrial Technology Development Organization)
  2. AIST
  3. MEXT (Ministry of Education, Culture, Sports, Science Technology)
  4. JST (Japan Science and Technology Agency)

向作者/读者索取更多资源

Protein glycosylation is a common post-translational modification that plays important roles in terms of protein function. However, analyzing the relationship between glycosylation and protein function remains technically challenging. This problem arises from the fact that the attached glycans possess diverse and heterogeneous structures. We believe that the first step to elucidate glycan function is to systematically determine the status of protein glycosylation under physiological conditions. Such studies involve analyzing differences in glycan structure on cell type (tissue), sex, and age, as well as changes associated with perturbations as a result of gene knockout of glycan biosynthesis-related enzyme, disease and drug treatment. Therefore, we analyzed a series of glycoproteomes in several mouse tissues to identify glycosylated proteins and their glycosylation sites. Comprehensive analysis was performed by lectin- or HILIC-capture of glycopeptide subsets followed by enzymatic deglycosylation in stable isotope-labeled water ((H2O)-O-18, IGOT) and finally LC-MS analyses. In total, 5060 peptides derived from 2556 glycoproteins were identified. We then constructed a glycoprotein database, GlycoProtDB, using our experimental-based information to facilitate future studies in glycobiology.

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