The role of CD80 and CD86 in enhancing CD8(+) cell suppression of HIV replication

E Barker1, K N Bossart, S H Fujimura

  • 1Department of Medicine, University of California, San Francisco, California 94143-1270, USA.

Cellular Immunology
|October 21, 1999
PubMed

Insights

Macrophages enhance CD8(+) cell HIV suppression via B7 molecules, particularly CD86. Blocking CD86 on macrophages reduces this enhanced antiviral activity and IL-2 production in CD8(+) cells.

Area of Science:

  • Immunology
  • Virology
  • Cellular Biology

Background:

  • CD8(+) T cells play a crucial role in controlling viral infections, including HIV.
  • Macrophages (Mphi) can enhance the antiviral activity of CD8(+) cells.
  • B7 molecules (CD80 and CD86) are known costimulatory molecules involved in T cell activation.

Purpose of the Study:

  • To investigate the specific roles of CD80 and CD86 molecules on macrophages in enhancing CD8(+) cell-mediated suppression of HIV replication.
  • To determine which B7 molecule is primarily responsible for the costimulatory effect on CD8(+) cells' antiviral activity.

Main Methods:

  • CD8(+) cells were stimulated with anti-CD3 antibodies in the presence or absence of autologous macrophages.
  • Purified CD80 and CD86 molecules were added during stimulation.
  • Blocking antibodies against CD80 and CD86 were used to assess their functional roles.
  • HIV replication suppression, IL-2 production, and CD8(+) cell proliferation were measured.

Main Results:

  • Both CD80 and CD86, when presented with anti-CD3, enhanced CD8(+) cell ability to suppress HIV replication.
  • Blocking CD86 on macrophages significantly reduced their ability to enhance CD8(+) cell antiviral activity and IL-2 production.
  • Blocking CD80 did not impair the enhanced antiviral activity or IL-2 production, despite blocking CD8(+) cell proliferation.

Conclusions:

  • CD86 is the predominant costimulatory molecule on macrophages that enhances CD8(+) cell-mediated suppression of HIV replication.
  • The preferential use of CD86 over CD80 may be due to higher expression levels of CD86 on macrophages.
  • Targeting CD86 presents a potential therapeutic strategy to boost CD8(+) cell anti-HIV responses.

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