Activation of LFA-1 through a Ca2(+)-dependent epitope stimulates lymphocyte adhesion

Y van Kooyk1, P Weder, F Hogervorst

  • 1Division of Immunology, The Netherlands Cancer Institute, Amsterdam.

Insights

Leukocyte function-associated molecule-1 (LFA-1) mediates immune cell adhesion. A novel antibody reveals distinct LFA-1 forms, with a Ca2+-dependent epitope crucial for adhesion but not sufficient alone for binding.

Area of Science:

  • Immunology
  • Cell Biology
  • Molecular Biology

Background:

  • Leukocyte function-associated molecule-1 (LFA-1) is critical for immune cell adhesion.
  • Understanding LFA-1 regulation is key to immune response mechanisms.

Purpose of the Study:

  • To investigate the regulatory mechanisms of LFA-1-ligand interactions in cell adhesion.
  • To characterize a novel anti-LFA-1 antibody (NKI-L16) that induces cell adhesion.

Main Methods:

  • Utilized an anti-LFA-1 alpha mAb (NKI-L16) and its Fab fragments.
  • Investigated antibody-induced aggregation and epitope expression on lymphocytes.
  • Correlated epitope expression with cell aggregation stimulated by PMA or TCR/CD3 complex.

Main Results:

  • NKI-L16 antibody recognizes a unique Ca2(+)-dependent activation epitope on LFA-1.
  • This epitope is induced on lymphocytes upon in vitro culture and correlates with adhesion capacity.
  • Epitope expression alone is insufficient for spontaneous cell binding, as seen in cloned T lymphocytes.

Conclusions:

  • Proposed three distinct forms of LFA-1: inactive, intermediate (NKI-L16+), and active (NKI-L16+).
  • The active LFA-1 form, exposing the NKI-L16 epitope, is essential for high-affinity ligand binding and cell adhesion.
  • LFA-1 activation requires specific triggering, not just epitope exposure.

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