4.8 Article

Sialylation of IgG Fc domain impairs complement-dependent cytotoxicity

Journal

JOURNAL OF CLINICAL INVESTIGATION
Volume 125, Issue 11, Pages 4160-4170

Publisher

AMER SOC CLINICAL INVESTIGATION INC
DOI: 10.1172/JCI82695

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Funding

  1. Austrian Academy of Sciences (OAW)
  2. German Research Foundation (DFG)
  3. German Science Foundation (DFG) [TRR130]
  4. NIH [R01 GM096973]

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IgG molecules exert both pro- and antiinflammatory effector functions based on the composition of the fragment crystallizable (Fc) domain glycan. Sialylated IgG Fc domains have antiinflammatory properties that are attributed to their ability to increase the activation threshold of innate effector cells to immune complexes by stimulating the upregulation of the inhibitory Fc gamma receptor IIB (Fc gamma RIIB). Here, we report that IgG Fc sialylation of human monoclonal IgG1 molecules impairs their efficacy to induce complement-mediated cytotoxicity (CDC). Fc sialylation of a CD20-targeting antibody had no impact on antibody-dependent cellular cytotoxicity and did not change the affinity of the antibody for activating Fc gamma receptors. In contrast, the presence of sialic acid abrogated the increased binding of C1q to Fc-galactosylated IgG1 and resulted in decreased levels of C3b deposition on the cell surface. Similar to monoclonal antibodies, sialic acid inhibited the increased C1q binding to galactosylated Fc fragments in human polyclonal IgG. In sera derived from patients with chronic inflammatory demyelinating polyneuropathy, an autoimmune disease of the peripheral nervous system in which humoral immune responses mediate tissue damage, induction of IgG Fc sialylation was associated with clinical disease remission. Thus, impairment of CDC represents an FcyR-independent mechanism by which Fc-sialylated glycovariants

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