Structural basis for RIFIN-mediated activation of LILRB1 in malaria

Thomas E Harrison1, Alexander M Mørch1,2, James H Felce2

  • 1Department of Biochemistry, University of Oxford, Oxford, UK.

Nature
|July 11, 2020
PubMed

Insights

Malaria-causing Plasmodium falciparum uses RIFIN proteins to bind immune receptor LILRB1, mimicking natural ligands and suppressing natural killer (NK) cell function.

Area of Science:

  • Immunology
  • Parasitology
  • Structural Biology

Background:

  • Malaria parasites, particularly Plasmodium falciparum, display RIFIN proteins on infected erythrocytes.
  • Some RIFINs interact with immune receptors like LILRB1, potentially dampening host immune responses.
  • Understanding RIFIN-LILRB1 interactions is crucial for comprehending malaria immune evasion.

Purpose of the Study:

  • To elucidate the structural basis of RIFIN activation of LILRB1-mediated signaling.
  • To investigate how RIFINs mimic natural ligands and affect immune cell function.

Main Methods:

  • Determined the crystal structure of a RIFIN bound to LILRB1.
  • Utilized mutational analysis to assess RIFIN-LILRB1 complex disruption and signaling.
  • Employed supported lipid bilayer systems to mimic NK cell activation and measure immune cell responses.

Main Results:

  • The structure revealed that RIFIN mimics MHC class I in its LILRB1-binding mode.
  • A single RIFIN mutation abolished LILRB1 binding and downstream signaling.
  • RIFINs, like MHC, were recruited to the NK cell immunological synapse, reducing NK cell activation and perforin mobilization.

Conclusions:

  • RIFINs employ a binding mode similar to natural LILRB1 ligands to suppress NK cell function.
  • This mimicry represents a novel immune evasion strategy by Plasmodium falciparum.
  • Targeting RIFIN-LILRB1 interactions could offer new therapeutic avenues against malaria.

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