Identification of broadly inhibitory anti-PfEMP1 antibodies by mass spectrometry sequencing of plasma IgG from a malaria-exposed child

peer-reviewed · Proceedings of the National Academy of Sciences · 2025

peer-reviewed · Proceedings of the National Academy of Sciences · 2025. Louise Turner et al. Plasmodium falciparum pathology is driven by the accumulation of parasite-infected erythrocytes in blood…
Date 2025-08-26
Type peer-reviewed
Venue Proceedings of the National Academy of Sciences
Publisher National Academy of Sciences
Contribution downstream-application
DOI 10.1073/pnas.2508744122
Citations (OpenAlex) 5
Venue 2-year citedness 8.56

Abstract

Plasmodium falciparum pathology is driven by the accumulation of parasite-infected erythrocytes in blood capillaries. This sequestration process is mediated by the parasite’s P. falciparum erythrocyte membrane protein 1 (PfEMP1) adhesins, which bind select endothelial cell receptors. A subset of PfEMP1 binding human endothelial protein C receptor (EPCR) through their cysteine-rich interdomain region alpha 1 (CIDRα1) domains drives the pathogenesis to severe malaria. Despite high sequence diversity among CIDRα1 domains, individuals living in malaria-endemic regions become immune to severe disease in part through acquisition of antibodies inhibiting the PfEMP1-EPCR interaction. Here, we demonstrate an approach to identify pathogen-specific human monoclonal antibodies from plasma, combining mass spectrometry analysis of antigen-purified polyclonal plasma IgG and Ig transcript sequencing. We identified a clonal family of broadly reactive and EPCR binding-inhibitory human monoclonal antibodies against CIDRα1. The antibodies, isolated from a 9-y-old child, exhibited potent inhibition of EPCR binding broadly across CIDRα1 domains as well as binding of infected erythrocytes to EPCR. Structural analysis of one antibody variant complexed with CIDRα1 revealed a shared epitope of the clonal antibody family overlapping the EPCR binding site and the epitopes of two previously identified monoclonal antibodies, C7 and C74, with similar functional patterns. However, although C7, C74, and 110-3 antibodies all depend on the same few residues conserved in CIDRα1 to retain EPCR binding, the 110-3 antibodies contact additional variable residues, reducing their breadth of reactivity across the CIDRα1 family. These data bolster the hypothesis that broadly inhibitory antibodies against severe malaria-associated PfEMP1 target similar epitopes and are commonly developed in malaria-exposed individuals.

Authors

  1. Louise Turner · Rigshospitalet, University of Copenhagen
  2. Teresa Nunez de Villavicencio Diaz · Rapid Novor Inc.
  3. Sai Sundar Rajan Raghavan · Rigshospitalet, The Scripps Research Institute, University of Copenhagen
  4. Ikhlaq Hussain Kana · Rigshospitalet, University of Copenhagen
  5. Eric Lyimo · National Institute for Medical Research
  6. Chelsea Reitzel · Rapid Novor Inc.
  7. Christian W. Wang · Rigshospitalet, University of Copenhagen
  8. Ewen Berube · Rigshospitalet, University of Copenhagen
  9. Rasmus W. Jensen · Rigshospitalet, University of Copenhagen
  10. Johannes R. Loeffler · The Scripps Research Institute
  11. Monica Lisa Fernández-Quintero · The Scripps Research Institute
  12. Thor G. Theander · Rigshospitalet, University of Copenhagen
  13. John P. A. Lusingu · National Institute for Medical Research
  14. Thierry Le Bihan · Rapid Novor Inc.
  15. Xiaobing Han · Rapid Novor Inc.
  16. Daniel T. R. Minja · National Institute for Medical Research
  17. Andrew B. Ward · The Scripps Research Institute
  18. Bin Ma · Rapid Novor Inc., University of Waterloo, University of Western Ontario, Western University
  19. Thomas Lavstsen · Rigshospitalet, University of Copenhagen

Methods and tools

  • Anti-PfEMP1 plasma antibody MS sequencing: Identifies broadly inhibitory human monoclonal antibodies against PfEMP1 CIDRalpha1 from a malaria-exposed child by mass spectrometry sequencing of antigen-purified plasma IgG combined with Ig transcript sequencing.

Methods it uses

  • Novor: Real-time decision-tree scoring

Data deposited

  • Identification of broadly inhibitory anti-PfEMP1 antibodies by mass spectrometry sequencing of plasma IgG from a malaria-exposed child — as deposited · PXD064525

Cites (1)

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