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1.
Biol Chem ; 388(1): 25-36, 2007 Jan.
Article in English | MEDLINE | ID: mdl-17214546

ABSTRACT

Binding of P. falciparum-infected erythrocytes to vascular endothelium and to uninfected erythrocytes is mediated by the parasite-derived variant erythrocyte membrane protein PfEMP-1 and various receptors, both on the vascular endothelium and on the erythrocyte surface. Consecutive, non-overlapping peptides spanning the N-terminal segment (NTS) and Duffy-binding-like PfEMP1 sequence alpha-domain (DBLalpha) of this protein were tested in erythrocyte and C32 cell binding assays. Eight peptides specifically bound to C32 cells, and were named high-activity binding peptides (HABPs). No erythrocyte binding HABPs were found in this region. Strikingly, three HABPs [6504 ((1)MVELA KMGPK EAAGG DDIED(20)), 6505 ((21)ESAKH MFDRI GKDVY DKVKE(40)) and 6506 ((41)YRAKE RGKGL QGRLS EAKFEK(60))] are located within the NTS, for which no specific function has yet been described. HABP 6505 is neither immunogenic nor protection-inducing; therefore, based on our previous reports, critical amino acids (shown in bold) in HABP-C32 cell binding were identified and replaced to modify HABP immunogenicity and protectivity. Analogue peptide 12722 (ESAKH KFDRI GKDVY DMVKE) produced high antibody titres and completely protected three out of 12 vaccinated Aotus monkeys and 23410 (KHKFD FIGKI VYDMV KER) also produced high protection-inducing titres and completely protected one out of eight monkeys. (1)H NMR studies showed that all peptides were helical. Binding of these peptides to isolated HLADRbeta1 molecules did not reveal any preference, suggesting that they could bind to molecules not studied here.


Subject(s)
Malaria, Falciparum/immunology , Peptides/immunology , Protozoan Proteins/immunology , Amino Acid Sequence , Animals , Aotidae , Binding Sites , Blotting, Western , Erythrocytes/immunology , Erythrocytes/metabolism , Erythrocytes/parasitology , Humans , Magnetic Resonance Spectroscopy , Malaria Vaccines/chemistry , Malaria Vaccines/immunology , Malaria Vaccines/metabolism , Malaria, Falciparum/metabolism , Malaria, Falciparum/parasitology , Models, Molecular , Molecular Sequence Data , Peptides/chemistry , Peptides/metabolism , Protein Binding , Protein Structure, Secondary , Protein Structure, Tertiary , Protozoan Proteins/chemistry , Protozoan Proteins/metabolism , Tumor Cells, Cultured
2.
Biochim Biophys Acta ; 1571(1): 27-33, 2002 May 10.
Article in English | MEDLINE | ID: mdl-12031287

ABSTRACT

Apical membrane antigen-1 is an integral Plasmodium falciparum malaria parasite membrane protein. High activity binding peptides (HABPs) to human red blood cells (RBCs) have been identified in this protein. One of them (peptide 4313), for which critical binding residues have already been defined, is conserved and nonimmunogenic. Its critical binding residues were changed for amino acids having similar mass but different charge to change such immunological properties; these changes generated peptide analogues. Some of these peptide analogues became immunogenic and protective in Aotus monkeys.Three-dimensional models of peptide 4313 and three analogues having different immune characteristics, were calculated from nuclear magnetic resonance (NMR) experiments with distance geometry and restrained molecular dynamic methods. All peptides contained a beta-turn structure spanning amino acids 7 to 10, except randomly structured 4313. When analysing dihedral angle phi and psi values, distorted type III or III' turns were identified in the protective and/or immunogenic peptides, whilst classical type III turns were found for the nonimmunogenic nonprotective peptides. This data shows that some structural modifications may lead to induction of immunogenicity and/or protection, suggesting a new way to develop multicomponent, subunit-based malarial vaccines.


Subject(s)
Malaria Vaccines , Plasmodium falciparum/immunology , Protozoan Proteins/administration & dosage , Vaccines, Synthetic/administration & dosage , Amino Acid Sequence , Animals , Antibodies, Protozoan/biosynthesis , Aotus trivirgatus , Binding Sites , Blotting, Western , Conserved Sequence , Magnetic Resonance Spectroscopy , Mass Spectrometry , Merozoite Surface Protein 1/chemistry , Merozoite Surface Protein 1/genetics , Merozoite Surface Protein 1/immunology , Models, Molecular , Molecular Sequence Data , Protozoan Proteins/chemical synthesis , Protozoan Proteins/immunology
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