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Published on: October 14, 2021
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.
Abstract:
NK cell activity is controlled by the integration of signals from numerous activating and inhibitory receptors at the immunological synapse (IS). However, the importance of segregation and patterning of proteins at the NK cell IS is unknown. In this study, we report that the level of expression of HLA-C on target cells determined its supramolecular organization and segregation from ICAM-1 at the NK cell IS, as well as its capacity to inhibit NK cell cytotoxicity. At YTS NK cell synapses formed with target cells expressing low levels of HLA-C (i.e., 10(4)/cell surface), a multifocal patterning of MHC class I protein predominated, whereas for higher levels of expression (10(5)/cell surface), clusters of HLA-C were more commonly homogeneous, ring-shaped, or containing multiple exclusions. This correlation of protein density with its patterning at the IS was independent of ATP- or actin-driven processes. Importantly, ICAM-1 and HLA-C segregated only at synapses involving target cells expressing high levels of MHC protein. For peripheral blood NK clones, there were specific thresholds in the level of target cell HLA-C needed to inhibit cytotoxicity and to cause segregation of HLA-C from ICAM-1 at the synapse. Thus, the synapse organization of HLA-C, determined by its level of expression, could directly influence NK cell inhibition, e.g., by regulating the proximity of activating and inhibitory receptors. For the first time, this suggests an important function for the assembly of an inhibitory NK cell IS. More broadly, segregation of proteins at intercellular contacts could transmit information about protein expression levels between cells.
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