Synthetic Oligodeoxynucleotide CpG Motifs Activate Human Complement through Their Backbone Structure and Induce Complement-Dependent Cytokine Release

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  • Eline de Boer
  • Marina Sokolova
  • Huy Q. Quach
  • Karin E. McAdam
  • Maximilian P. Götz
  • Viktoriia Chaban
  • Jarle Vaage
  • Beatrice Fageräng
  • Trent M. Woodruff
  • Garred, Peter
  • Per H. Nilsson
  • Tom E. Mollnes
  • Søren E. Pischke

Bacterial and mitochondrial DNA, sharing an evolutionary origin, act as danger-associated molecular patterns in infectious and sterile inflammation. They both contain immunomodulatory CpG motifs. Interactions between CpG motifs and the complement system are sparsely described, and mechanisms of complement activation by CpG remain unclear. Lepirudin-anticoagulated human whole blood and plasma were incubated with increasing concentrations of three classes of synthetic CpGs: CpG-A, -B, and -C oligodeoxynucleotides and their GpC sequence controls. Complement activation products were analyzed by immunoassays. Cytokine levels were determined via 27-plex beads-based immunoassay, and CpG interactions with individual complement proteins were evaluated using magnetic beads coated with CpG-B. In whole blood and plasma, CpG-B and CpG-C (p < 0.05 for both), but not CpG-A (p > 0.8 for all), led to time- and dose-dependent increase of soluble C5b-9, the alternative complement convertase C3bBbP, and the C3 cleavage product C3bc. GpC-A, -B, and -C changed soluble fluid-phase C5b-9, C3bBbP, and C3bc to the same extent as CpG-A, -B, and -C, indicating a DNA backbone-dependent effect. Dose-dependent CpG-B binding was found to C1q (r 5 0.83; p 5 0.006) and factor H (r 5 0.93; p < 0.001). The stimulatory complement effect was partly preserved in C2-deficient plasma and completely preserved in MASP-2-deficient serum. CpG-B increased levels of IL-1b, IL-2, IL-6, IL-8, MCP-1, and TNF in whole blood, which were completely abolished by inhibition of C5 and C5aR1 (p < 0.05 for all). In conclusion, synthetic analogs of bacterial and mitochondrial DNA activate the complement system via the DNA backbone. We suggest that CpG-B interacts directly with classical and alternative pathway components, resulting in complementC5aR1-dependent cytokine release.

OriginalsprogEngelsk
TidsskriftJournal of Immunology
Vol/bind209
Udgave nummer9
Sider (fra-til)1760-1767
ISSN0022-1767
DOI
StatusUdgivet - 2022

Bibliografisk note

Funding Information:
This work was supported by the Research Council of Norway (Grants 274332 and 274352).

Publisher Copyright:
Copyright © 2022 by The American Association of Immunologists, Inc.

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