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Methods to Investigate the Regulatory Role of Small RNAs and Ribosomal Occupancy of Plasmodium falciparum
Published on: December 4, 2015
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.
Abstract:
The Plasmodium species that cause malaria are obligate intracellular parasites, and disease symptoms occur when these parasites replicate in human blood. Despite the risk of immune detection, the parasite delivers proteins that bind to host receptors on the cell surfaces of infected erythrocytes. In the causative parasite of the most deadly form of malaria in humans, Plasmodium falciparum, RIFINs form the largest family of surface proteins displayed by erythrocytes1. Some RIFINs can bind to inhibitory immune receptors, and these RIFINs act as targets for unusual antibodies that contain a LAIR1 ectodomain2-4 or as ligands for LILRB15. RIFINs stimulate the activation of and signalling by LILRB15, which could potentially lead to the dampening of human immune responses. Here, to understand how RIFINs activate LILRB1-mediated signalling, we determine the structure of a RIFIN bound to LILRB1. We show that this RIFIN mimics the natural activating ligand of LILRB1, MHC class I, in its LILRB1-binding mode. A single mutation in the RIFIN disrupts the complex, blocks LILRB1 binding of all tested RIFINs and abolishes signalling in a reporter assay. In a supported lipid bilayer system, which mimics the activation of natural killer (NK) cells by antibody-dependent cell-mediated cytotoxicity, both RIFIN and MHC are recruited to the immunological synapse of NK cells and reduce the activation of NK cells, as measured by the mobilization of perforin. Therefore, LILRB1-binding RIFINs mimic the binding mode of the natural ligand of LILRB1 and suppress the function of NK cells.
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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