Orf virus-encoded interleukin-10 inhibits maturation, antigen presentation and migration of murine dendritic cells

Zabeen Lateef1, Stephen Fleming1, Gary Halliday2

  • 1Department of Microbiology, Virus Research Unit, University of Otago, PO Box 56, Dunedin, New Zealand.

Insights

Orf virus (ORFV) produces an IL-10-like virokine that impairs dendritic cell maturation and migration. This ORFV virokine hinders the initiation of acquired immune responses, preventing immunological memory formation against reinfection.

Area of Science:

  • Virology
  • Immunology
  • Cell Biology

Background:

  • Orf virus (ORFV), a parapoxvirus, causes skin lesions in various hosts and can reinfect its host.
  • ORFV's ability to reinfect suggests impaired immunological memory, potentially linked to viral factors.
  • ORFV encodes an Interleukin-10 (IL-10)-like virokine, prompting investigation into its immunomodulatory effects.

Purpose of the Study:

  • To investigate the impact of the ORFV-encoded IL-10-like virokine on dendritic cells (DCs), key initiators of acquired immunity.
  • To determine if ORFV-IL-10 affects DC maturation, antigen presentation, and Langerhans cell (LC) migration.

Main Methods:

  • Murine bone marrow-derived dendritic cells (BMDCs) were treated with ORFV-IL-10.
  • DC maturation markers (CD80, CD86, MHC class II) and antigen uptake were assessed.
  • T cell hybridoma activation via DC-mediated antigen presentation was measured.
  • LC migration and morphology were analyzed in cultured murine skin explants.

Main Results:

  • ORFV-IL-10 impaired the maturation of immature BMDCs, reducing expression of key surface markers.
  • DC-mediated presentation of antigens to a T cell hybridoma was significantly reduced after ORFV-IL-10 exposure.
  • ORFV-IL-10 inhibited spontaneous LC migration from skin explants and altered LC morphology.

Conclusions:

  • The ORFV-encoded IL-10-like virokine possesses the capacity to disrupt the initiation of acquired immune responses.
  • This virokine interferes with DC function and LC migration, potentially explaining ORFV's ability to evade host immunity and reinfect.
  • Targeting this viral immunomodulatory mechanism could be crucial for developing effective ORFV vaccines or therapies.

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