4.7 Article

In silico characterisation of putative Plasmodium falciparum vaccine candidates in African malaria populations

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SCIENTIFIC REPORTS
卷 11, 期 1, 页码 -

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NATURE PORTFOLIO
DOI: 10.1038/s41598-021-95442-4

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资金

  1. DELTAS Africa Initiative, an independent funding scheme of the African Academy of Sciences (AAS)'s Alliance for Accelerating Science in Africa (AESA)
  2. New Partnership for Africa's Development Planning and Coordinating Agency (NEPAD Agency)
  3. Wellcome (DELGEME grant) [107740/Z/15/Z]
  4. U.K. government
  5. Wellcome [206194, 090770/Z/09/Z]
  6. MRC Centre for Genomics and Global Health - Medical Research Council [G0600718, M006212]
  7. MRC Centre for Genomics and Global Health - Department for International Development (DFID) [G0600718, M006212]
  8. Wellcome Trust [090770/Z/09/Z, 107740/Z/15/Z] Funding Source: Wellcome Trust

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The study identified balancing selection signatures for most antigens across populations, except for phistb which showed lower diversity. This suggests that immune selection may be influencing these antigens, with phistb potentially being a target for immune recognition.
Genetic diversity of surface exposed and stage specific Plasmodium falciparum immunogenic proteins pose a major roadblock to developing an effective malaria vaccine with broad and long-lasting immunity. We conducted a prospective genetic analysis of candidate antigens (msp1, ama1, rh5, eba175, glurp, celtos, csp, lsa3, Pfsea, trap, conserved chrom3, hyp9, hyp10, phistb, surfin8.2, and surfin14.1) for malaria vaccine development on 2375 P. falciparum sequences from 16 African countries. We described signatures of balancing selection inferred from positive values of Tajima's D for all antigens across all populations except for glurp. This could be as a result of immune selection on these antigens as positive Tajima's D values mapped to regions with putative immune epitopes. A less diverse phistb antigen was characterised with a transmembrane domain, glycophosphatidyl anchors between the N and C- terminals, and surface epitopes that could be targets of immune recognition. This study demonstrates the value of population genetic and immunoinformatic analysis for identifying and characterising new putative vaccine candidates towards improving strain transcending immunity, and vaccine efficacy across all endemic populations.

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