Global diversity of the gene encoding the Pfs25 protein-a Plasmodium falciparum transmission-blocking vaccine candidate

被引:5
|
作者
Sookpongthai, Pornpawee [1 ]
Utayopas, Korawich [2 ]
Sitthiyotha, Thassanai [3 ]
Pengsakul, Theerakamol [4 ]
Kaewthamasorn, Morakot [5 ]
Wangkanont, Kittikhun [6 ]
Harnyuttanakorn, Pongchai [2 ]
Chunsrivirot, Surasak [3 ,6 ]
Pattaradilokrat, Sittiporn [2 ]
机构
[1] Chulalongkorn Univ, Fac Sci, Program Zool, Bangkok 10330, Thailand
[2] Chulalongkorn Univ, Fac Sci, Dept Biol, Bangkok 10330, Thailand
[3] Chulalongkorn Univ, Fac Sci, Dept Biochem, Struct & Computat Biol Res Unit, Bangkok 10330, Thailand
[4] Prince Songkla Univ, Fac Med Technol, Hat Yai 90110, Songkhla, Thailand
[5] Chulalongkorn Univ, Fac Vet Sci, Dept Pathol, Vet Parasitol Res Unit, Bangkok 10330, Thailand
[6] Chulalongkorn Univ, Fac Sci, Dept Biochem, Bangkok 10330, Thailand
关键词
Plasmodium falciparum; Malaria; Vaccine; Transmission-blocking; Diversity; Haplotype; MOLECULAR-DYNAMICS SIMULATIONS; GLUTAMATE-RICH PROTEIN; MALARIA TRANSMISSION; SEXUAL-STAGE; SEQUENCE POLYMORPHISM; ANTIBODY-RESPONSES; OOKINETE SURFACE; ANTIGEN PFS25; SWISS-MODEL; EXPRESSION;
D O I
10.1186/s13071-021-05078-6
中图分类号
R38 [医学寄生虫学]; Q [生物科学];
学科分类号
07 ; 0710 ; 09 ; 100103 ;
摘要
Background: Vaccines against the sexual stages of the malarial parasite Plasmodium falciparum are indispensable for controlling malaria and abrogating the spread of drug-resistant parasites. Pfs25, a surface antigen of the sexual stage of P. falciparum, is a leading candidate for transmission-blocking vaccine development. While clinical trials have reported that Pfs25-based vaccines are safe and effective in inducing transmission-blocking antibodies, the extent of the genetic diversity of Pfs25 in malaria endemic populations has rarely been studied. Thus, this study aimed to investigate the global diversity of Pfs25 in P. falciparum populations. Methods: A database of 307 Pfs25 sequences of P. falciparum was established. Population genetic analyses were performed to evaluate haplotype and nucleotide diversity, analyze haplotypic distribution patterns of Pfs25 in different geographical populations, and construct a haplotype network. Neutrality tests were conducted to determine evidence of natural selection. Homology models of the Pfs25 haplotypes were constructed, subjected to molecular dynamics (MD), and analyzed in terms of flexibility and percentages of secondary structures. Results: The Pfs25 gene of P. falciparum was found to have 11 unique haplotypes. Of these, haplotype 1 (H1) and H2, the major haplotypes, represented 70% and 22% of the population, respectively, and were dominant in Asia, whereas only H1 was dominant in Africa, Central America, and South America. Other haplotypes were rare and region-specific, resulting in unique distribution patterns in different geographical populations. The diversity in Pfs25 originated from ten single-nucleotide polymorphism (SNP) loci located in the epidermal growth factor (EGF)-like domains and anchor domain. Of these, an SNP at position 392 (GGA/GCA), resulting in amino acid substitution 131 (Gly/Ala), defined the two major haplotypes. The MD results showed that the structures of H1 and H2 variants were relatively similar. Limited polymorphism in Pfs25 could likely be due to negative selection. Conclusions: The study successfully established a Pfs25 sequence database that can become an essential tool for monitoring vaccine efficacy, designing assays for detecting malaria carriers, and conducting epidemiological studies of P. falciparum. The discovery of the two major haplotypes, H1 and H2, and their conserved structures suggests that the current Pfs25-based vaccines could be used globally for malaria control.
引用
收藏
页数:19
相关论文
共 50 条
  • [1] Global diversity of the gene encoding the Pfs25 protein—a Plasmodium falciparum transmission-blocking vaccine candidate
    Pornpawee Sookpongthai
    Korawich Utayopas
    Thassanai Sitthiyotha
    Theerakamol Pengsakul
    Morakot Kaewthamasorn
    Kittikhun Wangkanont
    Pongchai Harnyuttanakorn
    Surasak Chunsrivirot
    Sittiporn Pattaradilokrat
    Parasites & Vectors, 14
  • [2] Effect of CpG oligodeoxynucleotides on the immunogenicity of Pfs25, a Plasmodium falciparum transmission-blocking vaccine antigen
    Coban, C
    Ishii, KJ
    Stowers, AW
    Keister, DB
    Klinman, DM
    Kumar, N
    INFECTION AND IMMUNITY, 2004, 72 (01) : 584 - 588
  • [3] INDUCTION OF PLASMODIUM-FALCIPARUM TRANSMISSION-BLOCKING ANTIBODIES BY RECOMBINANT PFS25
    KASLOW, DC
    BATHURST, IC
    ISAACS, SN
    KEISTER, DB
    MOSS, B
    BARR, PJ
    MEMORIAS DO INSTITUTO OSWALDO CRUZ, 1992, 87 : 175 - 177
  • [4] USE OF A PLASMODIUM-SPECIFIC CARRIER PROTEIN TO ENHANCE PRODUCTION OF RECOMBINANT PFS25, A LEADING TRANSMISSION-BLOCKING VACCINE CANDIDATE
    Parzych, Elizabeth
    Miura, Kazutoyo
    Long, Carole A.
    Burns, James M.
    AMERICAN JOURNAL OF TROPICAL MEDICINE AND HYGIENE, 2017, 95 (05): : 518 - 518
  • [5] Evaluation of a Plasmodium-Specific Carrier Protein To Enhance Production of Recombinant Pfs25, a Leading Transmission-Blocking Vaccine Candidate
    Parzych, Elizabeth M.
    Miura, Kazutoyo
    Ramanathan, Aarti
    Long, Carole A.
    Burns, James M., Jr.
    INFECTION AND IMMUNITY, 2018, 86 (01)
  • [6] A region of Plasmodium falciparum antigen Pfs25 that is the target of highly potent transmission-blocking antibodies
    Stowers, AW
    Keister, DB
    Muratova, O
    Kaslow, DC
    INFECTION AND IMMUNITY, 2000, 68 (10) : 5530 - 5538
  • [7] Signatures of selection and drivers for novel mutation on transmission-blocking vaccine candidate Pfs25 gene in western Kenya
    Ochwedo, Kevin O.
    Onyango, Shirley A.
    Omondi, Collince J.
    Orondo, Pauline W.
    Ondeto, Benyl M.
    Lee, Ming-Chieh
    Atieli, Harrysone E.
    Ogolla, Sidney O.
    Githeko, Andrew K.
    Otieno, Antony C. A.
    Mukabana, Wolfgang R.
    Yan, Guiyun
    Zhong, Daibin
    Kazura, James W.
    PLOS ONE, 2022, 17 (04):
  • [8] Nasal immunization with a malaria transmission-blocking vaccine candidate, Pfs25, induces complete protective immunity in mice against field isolates of Plasmodium falciparum
    Arakawa, T
    Komesu, A
    Otsuki, H
    Sattabongkot, J
    Udomsangpetch, R
    Matsumoto, Y
    Tsuji, N
    Wu, YM
    Torii, M
    Tsuboi, T
    INFECTION AND IMMUNITY, 2005, 73 (11) : 7375 - 7380
  • [9] RECOMBINANT PFS25 PROTEIN OF PLASMODIUM-FALCIPARUM ELICITS MALARIA TRANSMISSION-BLOCKING IMMUNITY IN EXPERIMENTAL-ANIMALS
    BARR, PJ
    GREEN, KM
    GIBSON, HL
    BATHURST, IC
    QUAKYI, IA
    KASLOW, DC
    JOURNAL OF EXPERIMENTAL MEDICINE, 1991, 174 (05): : 1203 - 1208
  • [10] Long-lasting and transmission-blocking activity of antibodies to Plasmodium falciparum elicited in mice by protein conjugates of Pfs25
    Kubler-Kielb, Joanna
    Majadly, Fathy
    Wu, Yimin
    Narum, David L.
    Guo, Chunyan
    Miller, Louis H.
    Shiloach, Joseph
    Robbins, John B.
    Schneerson, Rachel
    PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2007, 104 (01) : 293 - 298