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    Over-expressed IgG2 antibodies against O-acetylated sialoglycoconjugates incapable of proper effector functioning in childhood acute lymphoblastic leukemia

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    Int. Immunol.-2005-Bandyopadhyay-177-91.pdf (645.3Kb)
    Date
    2005-02
    Author
    Bandyopadhyay, S.
    Bhattacharyya, A.
    Mallick, A.
    Sen, A. K.
    Tripathi, G.
    Das, Tanya
    Sa, Gaurisankar
    Bhattacharya, D. K.
    Mandal, C.
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    Abstract
    Earlier studies have demonstrated an over-expression of 9-O-acetylated sialoglycoconjugates (9-OAcSGs) on lymphoblasts, concomitant with high titers of anti-9-OAcSGs in childhood acute lymphoblastic leukemia (ALL). The present study was aimed to evaluate whether this high induction of anti-9-OAcSGs at disease presentation contributes toward immune surveillance. Accordingly, anti-9-OAcSGs were affinity purified from sera of ALL patients and normal individuals, and their specificity toward the glycotope having terminal 9-O-acetylated sialic acid-linked subterminal N-acetyl galactosamine (GalNAc) in alpha2-6 manner (9-OAcSAalpha2-6GalNAc) was established by hemagglutination assay, flow cytometry and confocal microscopy. Subclass distribution of anti-9-OAcSGs revealed a predominance of IgG2 in ALL. Analysis of glycosylation of anti-9-OAcSGs purified from sera of ALL patients (IgG(ALL)) and normal individuals (IgG(N)) by digoxigenin glycan enzyme assay, fluorimetric estimation, gas-liquid chromatography and lectin-binding assays demonstrated that disease-specific antibodies differ in content and nature as compared with normal controls. Enhanced amount of 9-OAcSA-specific IgG2 induced in ALL was unable to trigger activation of FcgammaR, the complement cascade and cell-mediated cytotoxicity, although its glycotope-binding ability remains unaffected. Interestingly, only IgG1(N) emerged as the potent mediator of cell-mediated cytotoxicity, complement fixation and activator of effector cells through FcgammaR. In ALL, the observed subclass switching of anti-9-OAcSGs to IgG2, alteration in their glycosylation profile along with impairment of a few Fc-glycosylation-sensitive effector functions hints toward a disbalanced homeostasis, thereby evading the host defense. These findings justify further evaluation of the mechanism for functional unresponsiveness of antibodies and production of 9-OAcSA-specific chimeric antibodies with normal Fc domain for therapeutic applications.
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    http://intimm.oxfordjournals.org/content/17/2/177.full.pdf+html
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    2. Scopus : Citation Link ->
    http://www.scopus.com/record/display.url?eid=2-s2.0-13844294379&origin=resultslist&sort=plf-f&src=s&nlo=&nlr=&nls=&sid=115EC66AA6E6B3EB782B2E5221C62A49.WlW7NKKC52nnQNxjqAQrlA%3a150&sot=aut&sdt=a&sl=35&s=AU-ID%28%22Sa%2c+Gaurisankar%22+7003523258%29&relpos=31&relpos=11&searchTerm=AU-ID%28%5C%26quot%3BSa%2C+Gaurisankar%5C%26quot%3B+7003523258%29
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