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PUBMED FOR HANDHELDS

Journal Abstract Search


287 related items for PubMed ID: 20823119

  • 1. Clustered O-glycans of IgA1: defining macro- and microheterogeneity by use of electron capture/transfer dissociation.
    Takahashi K, Wall SB, Suzuki H, Smith AD, Hall S, Poulsen K, Kilian M, Mobley JA, Julian BA, Mestecky J, Novak J, Renfrow MB.
    Mol Cell Proteomics; 2010 Nov; 9(11):2545-57. PubMed ID: 20823119
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  • 2. Determination of aberrant O-glycosylation in the IgA1 hinge region by electron capture dissociation fourier transform-ion cyclotron resonance mass spectrometry.
    Renfrow MB, Cooper HJ, Tomana M, Kulhavy R, Hiki Y, Toma K, Emmett MR, Mestecky J, Marshall AG, Novak J.
    J Biol Chem; 2005 May 13; 280(19):19136-45. PubMed ID: 15728186
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  • 7. Enzymatic sialylation of IgA1 O-glycans: implications for studies of IgA nephropathy.
    Takahashi K, Raska M, Stuchlova Horynova M, Hall SD, Poulsen K, Kilian M, Hiki Y, Yuzawa Y, Moldoveanu Z, Julian BA, Renfrow MB, Novak J.
    PLoS One; 2014 May 13; 9(2):e99026. PubMed ID: 24918438
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  • 8. Naturally occurring structural isomers in serum IgA1 o-glycosylation.
    Takahashi K, Smith AD, Poulsen K, Kilian M, Julian BA, Mestecky J, Novak J, Renfrow MB.
    J Proteome Res; 2012 Feb 03; 11(2):692-702. PubMed ID: 22067045
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  • 9. O-glycoforms of polymeric immunoglobulin A1 in the plasma of patients with IgA nephropathy are associated with pathological phenotypes.
    Yu G, Zhang Y, Meng B, Xie X, Wang Z, Ying W, Lv J, Zhang H.
    Nephrol Dial Transplant; 2021 Dec 31; 37(1):33-41. PubMed ID: 34152412
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  • 10. Separation of Two Distinct O-Glycoforms of Human IgA1 by Serial Lectin Chromatography Followed by Mass Spectrometry O-Glycan Analysis.
    Lehoux S, Ju T.
    Methods Enzymol; 2017 Dec 31; 585():61-75. PubMed ID: 28109443
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  • 11. Recognition of galactose-deficient O-glycans in the hinge region of IgA1 by N-acetylgalactosamine-specific snail lectins: a comparative binding study.
    Gomes MM, Suzuki H, Brooks MT, Tomana M, Moldoveanu Z, Mestecky J, Julian BA, Novak J, Herr AB.
    Biochemistry; 2010 Jul 13; 49(27):5671-82. PubMed ID: 20507092
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  • 12. Difference in IgA1 O-glycosylation between IgA deposition donors and IgA nephropathy recipients.
    Nakazawa S, Imamura R, Kawamura M, Kato T, Abe T, Namba T, Iwatani H, Yamanaka K, Uemura M, Kishikawa H, Nishimura K, Oka K, Tajiri M, Wada Y, Nonomura N.
    Biochem Biophys Res Commun; 2019 Jan 22; 508(4):1106-1112. PubMed ID: 30553446
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  • 14. IgA nephropathy and Henoch-Schoenlein purpura nephritis: aberrant glycosylation of IgA1, formation of IgA1-containing immune complexes, and activation of mesangial cells.
    Novak J, Moldoveanu Z, Renfrow MB, Yanagihara T, Suzuki H, Raska M, Hall S, Brown R, Huang WQ, Goepfert A, Kilian M, Poulsen K, Tomana M, Wyatt RJ, Julian BA, Mestecky J.
    Contrib Nephrol; 2007 Jan 22; 157():134-8. PubMed ID: 17495451
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  • 16. Methodological approaches to the analysis of IgA1 O-glycosylation in IgA nephropathy.
    Allen AC.
    J Nephrol; 1999 Jan 22; 12(2):76-84. PubMed ID: 10378662
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  • 19. IgA1 hinge-region clustered glycan fidelity is established early during semi-ordered glycosylation by GalNAc-T2.
    Stewart TJ, Takahashi K, Whitaker RH, Raska M, Placzek WJ, Novak J, Renfrow MB.
    Glycobiology; 2019 Jul 01; 29(7):543-556. PubMed ID: 30759204
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  • 20. Circulating immune complexes in IgA nephropathy consist of IgA1 with galactose-deficient hinge region and antiglycan antibodies.
    Tomana M, Novak J, Julian BA, Matousovic K, Konecny K, Mestecky J.
    J Clin Invest; 1999 Jul 01; 104(1):73-81. PubMed ID: 10393701
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