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PUBMED FOR HANDHELDS

Journal Abstract Search


109 related items for PubMed ID: 1421757

  • 1. Identification of the O-linked glycosylation site of the human transferrin receptor.
    Hayes GR, Enns CA, Lucas JJ.
    Glycobiology; 1992 Aug; 2(4):355-9. PubMed ID: 1421757
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  • 2. Presence of O-linked oligosaccharide on a threonine residue in the human transferrin receptor.
    Do SI, Cummings RD.
    Glycobiology; 1992 Aug; 2(4):345-53. PubMed ID: 1421756
    [Abstract] [Full Text] [Related]

  • 3. LC-MS/MS characterization of O-glycosylation sites and glycan structures of human cerebrospinal fluid glycoproteins.
    Halim A, Rüetschi U, Larson G, Nilsson J.
    J Proteome Res; 2013 Feb 01; 12(2):573-84. PubMed ID: 23234360
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  • 4. The critical glycosylation site of human transferrin receptor contains a high-mannose oligosaccharide.
    Hayes GR, Williams A, Costello CE, Enns CA, Lucas JJ.
    Glycobiology; 1995 Mar 01; 5(2):227-32. PubMed ID: 7780197
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  • 6. Order and maximum incorporation of N-acetyl-D-galactosamine into threonine residues of MUC2 core peptide with microsome fraction of human-colon-carcinoma LS174T cells.
    Iida S, Takeuchi H, Kato K, Yamamoto K, Irimura T.
    Biochem J; 2000 Apr 15; 347(Pt 2):535-42. PubMed ID: 10749684
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  • 7. Identification and characterization of glycosylation sites in human serum clusterin.
    Kapron JT, Hilliard GM, Lakins JN, Tenniswood MP, West KA, Carr SA, Crabb JW.
    Protein Sci; 1997 Oct 15; 6(10):2120-33. PubMed ID: 9336835
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  • 9. The oncofetal structure of human fibronectin defined by monoclonal antibody FDC-6. Unique structural requirement for the antigenic specificity provided by a glycosylhexapeptide.
    Matsuura H, Takio K, Titani K, Greene T, Levery SB, Salyan ME, Hakomori S.
    J Biol Chem; 1988 Mar 05; 263(7):3314-22. PubMed ID: 2449438
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  • 11. Site directed processing: role of amino acid sequences and glycosylation of acceptor glycopeptides in the assembly of extended mucin type O-glycan core 2.
    Brockhausen I, Dowler T, Paulsen H.
    Biochim Biophys Acta; 2009 Oct 05; 1790(10):1244-57. PubMed ID: 19524017
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  • 12. Characterization of glycosylation sites for a recombinant IgG1 monoclonal antibody and a CTLA4-Ig fusion protein by liquid chromatography-mass spectrometry peptide mapping.
    Bongers J, Devincentis J, Fu J, Huang P, Kirkley DH, Leister K, Liu P, Ludwig R, Rumney K, Tao L, Wu W, Russell RJ.
    J Chromatogr A; 2011 Nov 11; 1218(45):8140-9. PubMed ID: 21978954
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  • 14. Kinetic modeling confirms the biosynthesis of mucin core 1 (beta-Gal(1-3) alpha-GalNAc-O-Ser/Thr) O-glycan structures are modulated by neighboring glycosylation effects.
    Gerken TA.
    Biochemistry; 2004 Apr 13; 43(14):4137-42. PubMed ID: 15065856
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  • 15. Dephosphorylation of intact glycoprotein to greatly improve digestion efficiency coupled with matrix-assisted laser desorption/ionization-Fourier transform ion cyclotron resonance mass spectrometric analysis.
    Li F, Wang X, Liu Y, Liu H, Li Z.
    Anal Chim Acta; 2013 Jul 17; 787():140-7. PubMed ID: 23830432
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  • 16. Site-specific detection and structural characterization of the glycosylation of human plasma proteins lecithin:cholesterol acyltransferase and apolipoprotein D using HPLC/electrospray mass spectrometry and sequential glycosidase digestion.
    Schindler PA, Settineri CA, Collet X, Fielding CJ, Burlingame AL.
    Protein Sci; 1995 Apr 17; 4(4):791-803. PubMed ID: 7613477
    [Abstract] [Full Text] [Related]

  • 17. Targeted mass spectrometric approach for biomarker discovery and validation with nonglycosylated tryptic peptides from N-linked glycoproteins in human plasma.
    Lee JY, Kim JY, Park GW, Cheon MH, Kwon KH, Ahn YH, Moon MH, Lee HJ, Paik YK, Yoo JS.
    Mol Cell Proteomics; 2011 Dec 17; 10(12):M111.009290. PubMed ID: 21940909
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