Literature DB >> 21803099

Malaria vaccine candidate: design of a multivalent subunit α-helical coiled coil poly-epitope.

Sope Olugbile1, Viviane Villard, Sylvie Bertholet, Ali Jafarshad, Caroline Kulangara, Christian Roussilhon, Geraldine Frank, George W Agak, Ingrid Felger, Issa Nebie, Karidia Konate, Andrey V Kajava, Peter Schuck, Pierre Druilhe, François Spertini, Giampietro Corradin.   

Abstract

A new strategy for the rapid identification of new malaria antigens based on protein structural motifs was previously described. We identified and evaluated the malaria vaccine potential of fragments of several malaria antigens containing α-helical coiled coil protein motifs. By taking advantage of the relatively short size of these structural fragments, we constructed different poly-epitopes in which 3 or 4 of these segments were joined together via a non-immunogenic linker. Only peptides that are targets of human antibodies with anti-parasite in vitro biological activities were incorporated. One of the constructs, P181, was well recognized by sera and peripheral blood mononuclear cells (PBMC) of adults living in malaria-endemic areas. Affinity purified antigen-specific human antibodies and sera from P181-immunized mice recognised native proteins on malaria-infected erythrocytes in both immunofluorescence and western blot assays. In addition, specific antibodies inhibited parasite development in an antibody dependent cellular inhibition (ADCI) assay. Naturally induced antigen-specific human antibodies were at high titers and associated with clinical protection from malaria in longitudinal follow-up studies in Senegal.
Copyright © 2011 Elsevier Ltd. All rights reserved.

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Year:  2011        PMID: 21803099      PMCID: PMC4165486          DOI: 10.1016/j.vaccine.2011.06.122

Source DB:  PubMed          Journal:  Vaccine        ISSN: 0264-410X            Impact factor:   3.641


  23 in total

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2.  Sedimentation equilibrium analysis of protein interactions with global implicit mass conservation constraints and systematic noise decomposition.

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4.  [Study of premunition development in holo- and meso-endemic malaria areas in Dielmo and Ndiop (Senegal): preliminary results, 1990-1994[].

Authors:  C Rogier; J F Trape
Journal:  Med Trop (Mars)       Date:  1995

5.  A switch between two-, three-, and four-stranded coiled coils in GCN4 leucine zipper mutants.

Authors:  P B Harbury; T Zhang; P S Kim; T Alber
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10.  Rapid identification of malaria vaccine candidates based on alpha-helical coiled coil protein motif.

Authors:  Viviane Villard; George W Agak; Géraldine Frank; Ali Jafarshad; Catherine Servis; Issa Nébié; Sodiomon B Sirima; Ingrid Felger; Myriam Arevalo-Herrera; Socrates Herrera; Frederic Heitz; Volker Bäcker; Pierre Druilhe; Andrey V Kajava; Giampietro Corradin
Journal:  PLoS One       Date:  2007-07-25       Impact factor: 3.240

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  12 in total

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Journal:  Front Immunol       Date:  2022-05-26       Impact factor: 8.786

3.  Plasmodium vivax antigen discovery based on alpha-helical coiled coil protein motif.

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Review 4.  Designing malaria vaccines to circumvent antigen variability.

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5.  Multimodality Imaging of Angiogenesis in a Rabbit Atherosclerotic Model by GEBP11 Peptide Targeted Nanoparticles.

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7.  Natural immune response to Plasmodium vivax alpha-helical coiled coil protein motifs and its association with the risk of P. vivax malaria.

Authors:  Nora Céspedes; Connie S N Li Wai Suen; Cristian Koepfli; Camila T França; Ingrid Felger; Issa Nebie; Myriam Arévalo-Herrera; Ivo Mueller; Giampietro Corradin; Sócrates Herrera
Journal:  PLoS One       Date:  2017-06-26       Impact factor: 3.240

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9.  Identification of Immunodominant B-cell Epitope Regions of Reticulocyte Binding Proteins in Plasmodium vivax by Protein Microarray Based Immunoscreening.

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Review 10.  Malaria vaccines: high-throughput tools for antigens discovery with potential for their development.

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