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*Renal Immunobiology,
Department of Biochemistry, and
Institute for Cancer Studies, MRC Centre for Immune Regulation, The Medical School, University of Birmingham, Birmingham, UK
Correspondence to Professor C.O.S. Savage, Renal Immunobiology, MRC Centre for Immune Regulation, The Medical School, University of Birmingham, Birmingham, B15 2TT, UK. Phone: 44-121-414-7042; Fax: 44-121-414-6840;
ABSTRACT. Anti-neutrophil cytoplasm autoantibodies (ANCA) are implicated in the pathogenesis of systemic vasculitis. Intact ANCA IgG activate superoxide generation in cytokine-primed neutrophils after binding their antigens and co-engaging Fc
receptors (Fc
R). The contribution of antigen binding via ANCA F(ab')2 fragments to signaling has been unclear. This study shows that both ANCA IgG and F(ab')2 fragments of ANCA IgG induce significant GTPase activity, which could be blocked with pertussis toxin and anti-Gi protein antibodies. Pertussis toxin inhibited ANCA IgG-induced superoxide generation but was without effect on superoxide production after conventional Fc
R ligation. ANCA F(ab')2 fragments did not induce superoxide generation. ANCA IgG activated PI 3-kinasegenerating PIP3, activated protein kinase B (PKB), and p21ras; activation of each mediator was inhibited with pertussis toxin, but PI3K and PKB were not activated by ANCA IgG F(ab')2 fragments. Intact ANCA IgG induced tyrosine phosphorylation, whereas F(ab')2 fragments did not, and ANCA IgG-mediated superoxide generation was inhibited with genistein. Both genistein and pertussis toxin together completely abrogated the ANCA-induced oxidative burst. Genistein also inhibited ANCA IgG-induced PIP3 generation and p21ras activation. These data implicate a novel ANCA IgG stimulated signaling pathway that involves both F(ab')2-mediated antigen binding and Fc-mediated Fc
R ligation in cooperative interactions between Gi proteins and tyrosine kinases that facilitates activation of downstream mediators. E-mail: C.O.S.Savage@bham.ac.uk.
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