Functional analysis of the molecular factors controlling Qa1-mediated protection of target cells from NK lysis

F Gays1, K P Fraser, J A Toomey

  • 1Department of Microbiology and Immunology, The Medical School, Newcastle, United Kingdom.

Insights

Qa1 expression on cells is necessary but not sufficient for protection from natural killer (NK) cell lysis. Effective protection requires sufficient Qa1-peptide complexes to inhibit NK cell activity.

Area of Science:

  • Immunology
  • Cellular and Molecular Immunology

Background:

  • CD94/NKG2 receptors on mouse NK cells interact with the nonclassical class I molecule Qa1.
  • This interaction can inhibit NK cell-mediated lysis of Qa1-expressing cells, but the precise conditions and the role of the Qa1-associated peptide (Qdm) remain unclear.

Purpose of the Study:

  • To investigate the conditions under which Qa1 protects cells from NK cell lysis.
  • To elucidate the role of the Qdm peptide in Qa1-mediated protection.

Main Methods:

  • Utilized fetal NK cells lacking classical class I receptors but expressing CD94/NKG2.
  • Examined lysis of various Qa1-transfected cell lines (L cells, C1R cells, T2 cells, RMA/S cells) with and without Qdm peptide treatment.
  • Employed Qa1-specific monoclonal antibodies (mAbs) and cytotoxic T lymphocyte (CTL) assays.

Main Results:

  • Qa1-transfected L cells and C1R cells were resistant to NK lysis.
  • Qa1-transfected TAP-deficient T2 cells showed no resistance unless treated with Qdm or related peptides.
  • TAP-deficient RMA/S cells did not become Qa1-surface positive or resistant to NK lysis even with Qdm treatment, though they became sensitive to Qa1-specific CTLs.
  • Specific residues within the Qdm peptide (positions 3, 4, 5, and 8) are crucial for recognition by inhibitory CD94/NKG2 receptors.

Conclusions:

  • High surface Qa1 expression is necessary but insufficient for protection against NK cell lysis.
  • Effective protection relies on the formation of sufficient levels of appropriate Qa1-peptide complexes to counteract activating signals.
  • The Qdm peptide sequence is critical for the inhibitory function mediated by CD94/NKG2 receptors.

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