4.6 Article

Annexin A2 and A5 Serve as New Ligands for C1q on Apoptotic Cells

Journal

JOURNAL OF BIOLOGICAL CHEMISTRY
Volume 287, Issue 40, Pages 33733-33744

Publisher

AMER SOC BIOCHEMISTRY MOLECULAR BIOLOGY INC
DOI: 10.1074/jbc.M112.341339

Keywords

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Funding

  1. Soderberg Foundation
  2. Swedish Research Council Grant [K2009-68X-14928-06-3]
  3. Swedish Foundation for Strategic Research
  4. Swedish Rheumatism Association
  5. National Board of Health and Welfare and Skane University Hospital
  6. Osterlund Foundation
  7. Greta and Johan Kock Foundation
  8. King Gustaf V's 80th Birthday Foundation
  9. Knut and Alice Wallenberg Foundation
  10. Inga-Britt and Arne Lundberg Foundation

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C1q is the initiator of the classical complement pathway and opsonizes apoptotic cells to facilitate phagocytosis. Deficiency of C1q is the strongest known risk factor for development of systemic lupus erythematosus (SLE), which appears to be related to ensuing impaired clearance of apoptotic material. The objective of the current study was to investigate new ligands for C1q on the surface of apoptotic cells. We revealed that the two phospholipid-binding proteins annexin A2 and A5 are, beside DNA, significant C1q ligands. We furthermore, demonstrated that C1q binds directly to histones exposed on the surface of dying cells but we did not detect significant interaction with phosphatidylserine. The complement inhibitors C4b-binding protein and factor H also interact with dying cells, most likely to decrease complement activation beyond the level of C3 to allow noninflammatory clearance. Despite the fact that C4b-binding protein, factor H, and C1q share some ligands on dying cells, we showed that these three proteins did not compete with one another for binding to apoptotic cells. We additionally demonstrated that the way in which apoptosis is induced influenced both the degree of apoptosis and the binding of C1q. The knowledge, that annexin A2 and A5 act as ligands for C1q on apoptotic cells, sheds new light on the pathophysiology of autoimmune diseases.

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