Literature DB >> 23333606

Population genetic structure of the Plasmodium vivax circumsporozoite protein (Pvcsp) in Sri Lanka.

Sajani Dias1, Thilan Wickramarachchi, Imeshi Sahabandu, Ananias A Escalante, Preethi V Udagama.   

Abstract

Molecular methods elucidate evolutionary and ecological processes in parasites, where interaction between hosts and parasites enlighten the evolution of parasite lifestyles and host defenses. Population genetics of Plasmodium vivax parasites accurately describe transmission dynamics of the parasites and evaluation of malaria control measures. As a first generation vaccine candidate against malaria, the Circumsporozoite Protein (CSP) has demonstrated significant potential in P. falciparum. Extensive polymorphism hinders the development of a potent malaria vaccine. Hence, the genetic diversity of Pvcsp was investigated for the first time in 60 Sri Lankan clinical isolates by obtaining the nucleotide sequence of the central repeat (CR) domain and examining the polymorphism of the peptide repeat motifs (PRMs), the genetic diversity indices and phylogenetic relationships. PCR amplicons determined size polymorphism of 610, 700 and 710 bp in Pvcsp of Sri Lanka where all amino acid sequences obtained were of the VK210 variant, consisting variable repeats of 4 different PRMs. The two most abundant PRMs of the CR domain, GDRADGQPA and GDRAAGQPA consisted ~2-4 repeats, while GNRAAGQPA was unique to the island. Though, different nucleotide sequences termed repeat allotypes (RATs) were observed for each PRM, these were synonymous contributing to a less polymorphic CR domain. The genetic diversity of Pvcsp in Sri Lanka was due to the number of repetitive peptide repeat motifs, point mutations, and intragenic recombination. The 19 amino acid haplotypes defined were exclusive to Sri Lanka, whereas the 194 Pvcsp sequences of global isolates generated 57 more distinct a.a. haplotypes of the VK210 variant. Strikingly, the CR domain of both VK210 and VK247 variants was under purifying selection interpreting the scarcity of CSP non-synonymous polymorphisms. Insights to the distribution of RATs in the CR region with geographic clustering of the P. vivax VK210 variant were revealed. The cladogram reiterated this unique geographic clustering of local (VK210) and global isolates (VK210 and VK247), which was further validated by the elevated fixation index values of the VK210 variant.
Copyright © 2013 Elsevier B.V. All rights reserved.

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Year:  2013        PMID: 23333606     DOI: 10.1016/j.gene.2013.01.003

Source DB:  PubMed          Journal:  Gene        ISSN: 0378-1119            Impact factor:   3.688


  10 in total

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Authors:  Lilia González-Cerón; Jesus Martinez-Barnetche; Ciro Montero-Solís; Frida Santillán; Aida M Soto; Mario H Rodríguez; Benjamin J Espinosa; Octavio A Chávez
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Review 3.  Strategies for designing and monitoring malaria vaccines targeting diverse antigens.

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4.  Chloroquine and mefloquine resistance profiles are not related to the circumsporozoite protein (CSP) VK210 subtypes in field isolates of Plasmodium vivax from Manaus, Brazilian Amazon.

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Journal:  Mem Inst Oswaldo Cruz       Date:  2019-08-12       Impact factor: 2.743

5.  Balancing selection and high genetic diversity of Plasmodium vivax circumsporozoite central region in parasites from Brazilian Amazon and Rio de Janeiro Atlantic Forest.

Authors:  Natália Ketrin Almeida-de-Oliveira; Rebecca de Abreu-Fernandes; Lidiane Lima-Cury; Aline Rosa de Lavigne; Anielle de Pina-Costa; Daiana de Souza Perce-da-Silva; Marcos Catanho; Atila Duque Rossi; Patrícia Brasil; Cláudio Tadeu Daniel-Ribeiro; Maria de Fátima Ferreira-da-Cruz
Journal:  PLoS One       Date:  2020-11-09       Impact factor: 3.240

6.  Genetic characterization of Plasmodium vivax isolates from Pakistan using circumsporozoite protein (pvcsp) and merozoite surface protein-1 (pvmsp-1) genes as genetic markers.

Authors:  Zainab Bibi; Anam Fatima; Rehana Rani; Ayesha Maqbool; Samea Khan; Shumaila Naz; Shahid Waseem
Journal:  Malar J       Date:  2021-02-25       Impact factor: 2.979

7.  Differing patterns of selection and geospatial genetic diversity within two leading Plasmodium vivax candidate vaccine antigens.

Authors:  Christian M Parobek; Jeffrey A Bailey; Nicholas J Hathaway; Duong Socheat; William O Rogers; Jonathan J Juliano
Journal:  PLoS Negl Trop Dis       Date:  2014-04-17

8.  Genetic sequence characterization and naturally acquired immune response to Plasmodium vivax Rhoptry Neck Protein 2 (PvRON2).

Authors:  Najara C Bittencourt; Juliana A Leite; Ana Beatriz I E Silva; Tamirys S Pimenta; João Luiz Silva-Filho; Gustavo C Cassiano; Stefanie C P Lopes; Joao C K Dos-Santos; Catarina Bourgard; Helder I Nakaya; Ana Maria Revorêdo da Silva Ventura; Marcus V G Lacerda; Marcelo U Ferreira; Ricardo L D Machado; Letusa Albrecht; Fabio T M Costa
Journal:  Malar J       Date:  2018-10-31       Impact factor: 2.979

9.  Exploration of genetic diversity of Plasmodium vivax circumsporozoite protein (Pvcsp) and Plasmodium vivax sexual stage antigen (Pvs25) among North Indian isolates.

Authors:  Hargobinder Kaur; Rakesh Sehgal; Archit Kumar; Alka Sehgal; Praveen K Bharti; Devendra Bansal; Pradyumna K Mohapatra; Jagadish Mahanta; Ali A Sultan
Journal:  Malar J       Date:  2019-09-06       Impact factor: 2.979

10.  Genotyping and Phylogenetic Analysis of Plasmodium vivax Circumsporozoite Protein (PvCSP) Gene of Clinical Isolates in South-Eastern Iran.

Authors:  Soudabeh Etemadi; Mehdi Nateghpour; Afsaneh Motevalli Haghi; Hamid Eslami; Mehdi Mohebali; Neda Setayesh; Leila Farivar; Aref Teimouri
Journal:  Iran J Public Health       Date:  2020-05       Impact factor: 1.429

  10 in total

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