Segregation of HLA-C from ICAM-1 at NK cell immune synapses is controlled by its cell surface density

Catarina R Almeida1, Daniel M Davis

  • 1Division of Cell and Molecular Biology, Imperial College London, London, United Kingdom.

Insights

Target cell HLA-C expression levels dictate its organization and segregation at the Natural Killer (NK) cell immunological synapse (IS), influencing NK cell inhibition. This reveals a key function for inhibitory NK cell IS assembly.

Area of Science:

  • Immunology
  • Cell Biology
  • Molecular Biology

Background:

  • Natural Killer (NK) cell activity relies on integrating signals from activating and inhibitory receptors at the immunological synapse (IS).
  • The role of protein organization and patterning within the NK cell IS remains largely unexplored.

Purpose of the Study:

  • To investigate how target cell expression levels of HLA-C influence its supramolecular organization and segregation at the NK cell IS.
  • To determine the impact of HLA-C organization on NK cell cytotoxicity and inhibition.

Main Methods:

  • Utilized YTS NK cell synapses and target cells with varying HLA-C expression levels.
  • Analyzed protein patterning (multifocal, homogeneous, ring-shaped) and segregation of HLA-C from ICAM-1 at the IS.
  • Assessed NK cell cytotoxicity and inhibition thresholds in peripheral blood NK clones.

Main Results:

  • Target cell HLA-C expression level determined its patterning (multifocal at low levels, clustered/ring-shaped at high levels) at the IS.
  • HLA-C and ICAM-1 segregated only at synapses with high target cell MHC protein expression.
  • Specific thresholds of target cell HLA-C were required for NK cell inhibition and HLA-C/ICAM-1 segregation.

Conclusions:

  • The supramolecular organization of HLA-C at the NK cell IS, dictated by its expression level, directly impacts NK cell inhibition by potentially regulating receptor proximity.
  • This study highlights a significant function for the assembly of inhibitory NK cell IS.
  • Protein segregation at intercellular contacts may serve as a mechanism for transmitting protein expression level information between cells.

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