Structure-guided insights into potential function of novel genetic variants in the malaria vaccine candidate PfRh5

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作者
Khadidiatou Mangou
Adam J. Moore
Laty Gaye Thiam
Aboubacar Ba
Alessandra Orfanó
Ife Desamours
Duncan Ndungu Ndegwa
Justin Goodwin
Yicheng Guo
Zizhang Sheng
Saurabh D. Patel
Fatoumata Diallo
Seynabou D. Sene
Mariama N. Pouye
Awa Thioub Faye
Alassane Thiam
Vanessa Nunez
Cheikh Tidiane Diagne
Bacary Djilocalisse Sadio
Lawrence Shapiro
Ousmane Faye
Alassane Mbengue
Amy K. Bei
机构
[1] Yale School of Public Health,Department of Epidemiology of Microbial Diseases
[2] Institut Pasteur de Dakar,G4
[3] University of Embu, Malaria Experimental Genetic Approaches & Vaccines, Pôle Immunophysiopathologie et Maladies Infectieuses
[4] Columbia University,Zuckerman Mind Brain Behavior Institute
[5] Columbia University Vagelos College of Physicians and Surgeons,Aaron Diamond AIDS Research Center
[6] Pôle Virologie,Department of Biochemistry and Biophysics
[7] Institut Pasteur de Dakar,Department of Pathology, Microbiology, and Immunology, School of Veterinary Medicine
[8] Columbia University,MIVEGEC (Infectious Diseases and Vector: Ecology, Genetics, Evolution and Control)
[9] University of California Davis,undefined
[10] University of Montpelier,undefined
[11] IRD,undefined
[12] CNRS,undefined
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The recent stall in the global reduction of malaria deaths has made the development of a highly effective vaccine essential. A major challenge to developing an efficacious vaccine is the extensive diversity of Plasmodium falciparum antigens. While genetic diversity plays a major role in immune evasion and is a barrier to the development of both natural and vaccine-induced protective immunity, it has been under-prioritized in the evaluation of malaria vaccine candidates. This study uses genomic approaches to evaluate genetic diversity in next generation malaria vaccine candidate PfRh5. We used targeted deep amplicon sequencing to identify non-synonymous Single Nucleotide Polymorphisms (SNPs) in PfRh5 (Reticulocyte-Binding Protein Homologue 5) in 189 P. falciparum positive samples from Southern Senegal and identified 74 novel SNPs. We evaluated the population prevalence of these SNPs as well as the frequency in individual samples and found that only a single SNP, C203Y, was present at every site. Many SNPs were unique to the individual sampled, with over 90% of SNPs being found in just one infected individual. In addition to population prevalence, we assessed individual level SNP frequencies which revealed that some SNPs were dominant (frequency of greater than 25% in a polygenomic sample) whereas most were rare, present at 2% or less of total reads mapped to the reference at the given position. Structural modeling uncovered 3 novel SNPs occurring under epitopes bound by inhibitory monoclonal antibodies, potentially impacting immune evasion, while other SNPs were predicted to impact PfRh5 structure or interactions with the receptor or binding partners. Our data demonstrate that PfRh5 exhibits greater genetic diversity than previously described, with the caveat that most of the uncovered SNPs are at a low overall frequency in the individual and prevalence in the population. The structural studies reveal that novel SNPs could have functional implications on PfRh5 receptor binding, complex formation, or immune evasion, supporting continued efforts to validate PfRh5 as an effective malaria vaccine target and development of a PfRh5 vaccine.
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  • [1] Structure-guided insights into potential function of novel genetic variants in the malaria vaccine candidate PfRh5
    Mangou, Khadidiatou
    Moore, Adam J.
    Thiam, Laty Gaye
    Ba, Aboubacar
    Orfano, Alessandra
    Desamours, Ife
    Ndegwa, Duncan Ndungu
    Goodwin, Justin
    Guo, Yicheng
    Sheng, Zizhang
    Patel, Saurabh D.
    Diallo, Fatoumata
    Sene, Seynabou D.
    Pouye, Mariama N.
    Faye, Awa Thioub
    Thiam, Alassane
    Nunez, Vanessa
    Diagne, Cheikh Tidiane
    Sadio, Bacary Djilocalisse
    Shapiro, Lawrence
    Faye, Ousmane
    Mbengue, Alassane
    Bei, Amy K.
    [J]. SCIENTIFIC REPORTS, 2022, 12 (01)
  • [2] PfRH5 as a candidate vaccine for Plasmodium falciparum malaria
    Drew, Damien R.
    Beeson, James G.
    [J]. TRENDS IN PARASITOLOGY, 2015, 31 (03) : 87 - 88
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    Alam, Nawsad
    Farrell, Brendan
    Quinkert, Doris
    Lias, Amelia M.
    King, Lloyd D. W.
    Barfod, Lea K.
    Draper, Simon J.
    Campeotto, Ivan
    Higgins, Matthew K.
    [J]. EMBO MOLECULAR MEDICINE, 2024,
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    Oboh, Mary Aigbiremo
    Asmorom, Naemy
    Falade, Catherine
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    [J]. PEERJ, 2023, 11
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    Etemadi, Soudabeh
    Getso, Muhammad Ibrahim
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    [J]. GENE REPORTS, 2021, 23
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