PfEMP1 A-Type ICAM-1-Binding Domains Are Not Associated with Cerebral Malaria in Beninese Children

V Joste1, E Guillochon1, J Fraering1

  • 1Université de Paris, MERIT, IRD, Paris, France.

Mbio
|November 18, 2020
PubMed

Insights

Cerebral malaria (CM) pathophysiology is unclear, but PfEMP1 protein domains binding to EPCR are overexpressed in CM. ICAM-1 binding domains and motifs were found in both CM and uncomplicated malaria (UM) isolates, questioning their role in CM.

Area of Science:

  • Immunology
  • Infectious Diseases
  • Molecular Biology

Background:

  • * Plasmodium falciparum erythrocyte membrane protein 1 (PfEMP1) mediates sequestration in the cerebrovascular endothelium, contributing to cerebral malaria (CM) pathophysiology.
  • * While some PfEMP1 domains are linked to clinical malaria phenotypes, their specific association with adhesion properties and CM remains incompletely understood.

Purpose of the Study:

  • * To correlate the cytoadherence phenotype of Plasmodium falciparum isolates with clinical presentation (CM vs. uncomplicated malaria [UM]) and specific PfEMP1 domain expression.
  • * To investigate the prevalence of ICAM-1-binding motifs and dual receptor-binding domains in relation to CM.
  • * To evaluate IgG responses against specific PfEMP1 domains in relation to clinical presentation.

Main Methods:

  • * Recruitment of 73 CM and 98 UM children from Benin.
  • * Measurement of isolate cytoadherence on Hbec-5i and CHO-ICAM-1 cell lines.
  • * Assessment of var gene expression and prevalence of ICAM-1-binding motifs and dual receptor-binding domains.
  • * Evaluation of IgG levels against recombinant PfEMP1 domains (CIDRα1.4, DBLβ3).

Main Results:

  • * CM isolates exhibited higher cytoadherence levels on both cell lines compared to UM isolates.
  • * Expression of CIDRα1.4-DBLβ1/3 domains correlated with CHO-ICAM-1 cytoadherence.
  • * Endothelial protein C receptor (EPCR)-binding domains were significantly overexpressed in CM isolates.
  • * ICAM-1-binding DBLβ1/3 domain expression and ICAM-1-binding/dual receptor-binding motifs were present in both CM and UM isolates.
  • * No significant difference in IgG response against DBLβ3 was observed between CM and UM isolates expressing the ICAM-1-binding DBLβ1/3 domain.

Conclusions:

  • * The study confirms the role of EPCR-binding domains in CM pathophysiology due to their overexpression in CM isolates.
  • * The role of ICAM-1-binding domains in CM is questioned, as these motifs and domains were found in both CM and UM isolates without differential IgG responses.
  • * Further research is needed to elucidate the precise role of specific PfEMP1 domains, particularly DBLβ1/3, in CM pathogenesis and their potential as vaccine targets.