Strategies for developing multi-epitope, subunit-based, chemically synthesized anti-malarial vaccines

J Cell Mol Med. 2008 Oct;12(5B):1915-35. doi: 10.1111/j.1582-4934.2008.00174.x.

Abstract

An anti-malarial vaccine against the extremely lethal Plasmodium falciparum is desperately needed. Peptides from this parasite's proteins involved in invasion and having high red blood cell-binding ability were identified; these conserved peptides were not immunogenic or protection-inducing when used for immunizing Aotus monkeys. Modifying some critical binding residues in these high-activiy binding peptides' (HABPs') attachment to red blood cells (RBC) allowed them to induce immunogenicity and protection against experimental challenge and acquire the ability to bind to specific HLA-DRp1* alleles. These modified HABPs adopted certain characteristic structural configurations as determined by circular dichroism (CD) and 1H nuclear magnetic resonance (NMR) associated with certain HLA-DRbeta1* haplotype binding activities and characteristics, such as a 2-angstroms-distance difference between amino acids fitting into HLA-DRp1 Pockets 1 to 9, residues participating in binding to HLA-DR pockets and residues making contact with the TCR, suggesting haplotype and allele-conscious TCR. This has been demonstrated in HLA-DR-like genotyped monkeys and provides the basis for designing high effective, subunit-based, multi-antigen, multi-stage, synthetic vaccines, for immediate human use, malaria being one of them.

Publication types

  • Research Support, Non-U.S. Gov't
  • Review

MeSH terms

  • Animals
  • Epitopes / genetics
  • Epitopes / immunology*
  • Epitopes / metabolism
  • HLA-DR Antigens / chemistry
  • HLA-DR Antigens / genetics
  • HLA-DR Antigens / immunology
  • Humans
  • Malaria / genetics
  • Malaria / immunology
  • Malaria Vaccines / chemical synthesis*
  • Malaria Vaccines / genetics
  • Malaria Vaccines / immunology
  • Models, Biological
  • Plasmodium falciparum / immunology*
  • Plasmodium falciparum / pathogenicity
  • Vaccines, Subunit / chemical synthesis*
  • Vaccines, Subunit / chemistry
  • Vaccines, Subunit / immunology
  • Vaccines, Synthetic / genetics
  • Vaccines, Synthetic / immunology*
  • Vaccines, Synthetic / metabolism

Substances

  • Epitopes
  • HLA-DR Antigens
  • Malaria Vaccines
  • Vaccines, Subunit
  • Vaccines, Synthetic