Target cell-directed inactivation and IL-2-dependent reactivation of LAK cells

J Xiao1, Z Brahmi

  • 1Department of Medicine, Indiana University School of Medicine, Indianapolis 46223.

Cellular Immunology
|September 1, 1989
PubMed

Insights

Human natural killer (NK) cells and lymphokine-activated killer (LAK) cells lose lytic activity after target interaction but can be reactivated with IL-2. Protein synthesis is required for this reactivation, suggesting a common mechanism for NK and ADCC activity.

Area of Science:

  • Immunology
  • Cellular Biology
  • Cytotoxicity

Background:

  • Previous studies indicated human natural killer (NK) cells lose lytic activity and antibody-dependent cellular cytotoxicity (ADCC) after target interaction, suggesting a shared mechanism.
  • The inactivation mechanism and potential for reactivation of lymphokine-activated killer (LAK) cells, a distinct effector cell population, remained to be elucidated.

Purpose of the Study:

  • To investigate if LAK cells, similar to NK cells, can be inactivated by target cell interaction and subsequently reactivated.
  • To explore the role of protein synthesis in the reactivation process of inactivated effector cells.

Main Methods:

  • Tested inactivation and reactivation of three effector cell populations: freshly isolated NK cells, IL-2 cultured cells, and LAK cells.
  • Assessed NK-like cytotoxic activity (NK-CMC) and ADCC after interaction with K562 cells or antibody-coated K562 cells.
  • Investigated reactivation potential with IL-2 and the effect of emetine (protein synthesis inhibitor) on reactivation.

Main Results:

  • All tested effector cell populations showed significant loss of NK-CMC and ADCC after interaction with K562 or antibody-coated K562 targets.
  • Inactivated effector cells exhibited reduced C-reactive protein and Leu-11a expression.
  • Inactivated LAK cells regained lytic activity upon IL-2 culture in a time-dependent manner, but reactivation was blocked by emetine.

Conclusions:

  • Effector cell inactivation is target-directed and affects both NK-CMC and ADCC, indicating a common lytic pathway.
  • Reactivation of inactivated effector cells by IL-2 is dependent on protein synthesis, highlighting the dynamic nature of cellular cytotoxicity.
  • These findings support a common mechanism for NK and ADCC and underscore the plasticity of effector cell function.