Molecular mechanisms underlying lymphocyte recirculation. III. Characterization of the LECAM-1 (L-selectin)-dependent

T Tamatani1, K Kuida, T Watanabe

  • 1Department of Immunology, Tokyo Metropolitan Institute of Medical Science, Japan.

Insights

This study characterizes a L-selectin (LECAM-1)-dependent adhesion pathway in rats, identifying specific ligands on high endothelial cells crucial for lymphocyte recirculation. The findings provide tools for further research into LECAM-1 interactions.

Area of Science:

  • Immunology
  • Cell Biology
  • Biochemistry

Background:

  • L-selectin (LECAM-1) mediates lymphocyte binding to high endothelial venules (HEV) in lymph nodes, a key step in lymphocyte recirculation.
  • Previous cloning of rat LECAM-1 cDNA laid the groundwork for further investigation into its function.

Purpose of the Study:

  • To characterize a LECAM-1-dependent adhesion pathway in rats.
  • To identify and analyze the ligands recognized by rat LECAM-1.

Main Methods:

  • Construction and expression of a rat LECAM-1-IgG chimera (rLEC-IgG).
  • Production of monoclonal antibodies (mAb) against rat LECAM-1.
  • Binding assays using rLEC-IgG and an HEV-derived cell line (Ax).
  • Co-immunoprecipitation of LECAM-1 ligands from tissue and cell lysates.

Main Results:

  • LECAM-1 ligands are found on HE cells in lymph nodes, CNS, and kidney vasculature.
  • Lymphocyte binding to LN HEV is inhibited by rLEC-IgG and anti-LECAM-1 mAb.
  • Ax cells bind specifically to rLEC-IgG in a Ca2+-dependent manner, indicating expression of LECAM-1 ligands.
  • LECAM-1 specifically precipitates sulfated glycoproteins from lymph node and Ax cell lysates.

Conclusions:

  • Rat LECAM-1 recognizes specific ligands, likely carbohydrate structures on sulfated glycoproteins, expressed on HE cells and Ax cells.
  • The rLEC-IgG chimera and Ax cells are valuable tools for studying LECAM-1-mediated lymphocyte-HE cell interactions.