Activation of complement on the surface of cells infected by human immunodeficiency virus

G T Spear1, A L Landay, B L Sullivan

  • 1Department of Immunology/Microbiology, Rush-Presbyterian-St. Luke's Medical Center, Chicago, IL 60612.

Insights

Complement (C) activation occurs on HIV-infected cells, primarily via the classical pathway, requiring anti-HIV antibodies. Coinfection with HTLV-1 creates antibody-independent C activation on HIV-infected cells.

Area of Science:

  • Immunology
  • Virology
  • Cell Biology

Background:

  • The complement system (C) plays a crucial role in innate and adaptive immunity.
  • Human immunodeficiency virus (HIV) infection impacts various immune cells and functions.
  • Understanding C activation in the context of HIV infection is vital for comprehending disease pathogenesis.

Purpose of the Study:

  • To investigate C activation on HIV-1 infected cells.
  • To determine the pathways involved in C activation.
  • To explore the effects of coinfection with HTLV-1 on C activation.

Main Methods:

  • Flow cytometry was used to detect C3 fragment deposition on HIV-infected H9 and MT-4 cell lines.
  • Classical pathway involvement was assessed using EGTA and C2-deficient serum.
  • Cytotoxicity assays were performed using human and rabbit complement.

Main Results:

  • HIV-infected H9 cells showed C3 binding only when incubated with anti-HIV antibody and normal human serum.
  • C3 binding on HIV-infected H9 cells required specific antibody and occurred via the classical pathway.
  • HIV-infected MT-4 cells, coinfected with HTLV-1, exhibited antibody-independent C3 binding via the classical pathway.
  • Rabbit complement, but not human complement, showed direct cytotoxicity against antibody-treated HIV-infected cells.

Conclusions:

  • Complement can be activated in vivo by HIV-infected cells, often requiring specific anti-HIV antibodies.
  • Coinfection with HTLV-1 can lead to novel, antibody-independent complement activation pathways.
  • C3 deposition on infected cells may influence interactions with complement receptor-bearing cells.

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