Literature DB >> 33379267

Plasmodium vivax Cysteine-Rich Protective Antigen Polymorphism at Exon-1 Shows Recombination and Signatures of Balancing Selection.

Lilia González-Cerón1, José Cebrián-Carmona2, Concepción M Mesa-Valle2, Federico García-Maroto3, Frida Santillán-Valenzuela1, Jose Antonio Garrido-Cardenas2.   

Abstract

Plasmodium vivax Cysteine-Rich Protective Antigen (CyRPA) is a merozoite protein participating in the parasite invasion of human reticulocytes. During natural P. vivax infection, antibody responses against PvCyRPA have been detected. In children, low anti-CyRPA antibody titers correlated with clinical protection, which suggests this protein as a potential vaccine candidate. This work analyzed the genetic and amino acid diversity of pvcyrpa in Mexican and global parasites. Consensus coding sequences of pvcyrpa were obtained from seven isolates. Other sequences were extracted from a repository. Maximum likelihood phylogenetic trees, genetic diversity parameters, linkage disequilibrium (LD), and neutrality tests were analyzed, and the potential amino acid polymorphism participation in B-cell epitopes was investigated. In 22 sequences from Southern Mexico, two synonymous and 21 nonsynonymous mutations defined nine private haplotypes. These parasites had the highest LD-R2 index and the lowest nucleotide diversity compared to isolates from South America or Asia. The nucleotide diversity and Tajima's D values varied across the coding gene. The exon-1 sequence had greater diversity and Rm values than those of exon-2. Exon-1 had significant positive values for Tajima's D, β-α values, and for the Z (HA: dN > dS) and MK tests. These patterns were similar for parasites of different origin. The polymorphic amino acid residues at PvCyRPA resembled the conformational B-cell peptides reported in PfCyRPA. Diversity at pvcyrpa exon-1 is caused by mutation and recombination. This seems to be maintained by balancing selection, likely due to selective immune pressure, all of which merit further study.

Entities:  

Keywords:  Cysteine-Rich Protective Antigen (CyRPA); MK test; Plasmodium vivax; Southern Mexico; Tajima’s D; balancing selection; genetic diversity; merozoite protein; phylogenetic tree; pvcyrpa

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Year:  2020        PMID: 33379267      PMCID: PMC7823296          DOI: 10.3390/genes12010029

Source DB:  PubMed          Journal:  Genes (Basel)        ISSN: 2073-4425            Impact factor:   4.096


  37 in total

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Journal:  Mol Biol Evol       Date:  2017-12-01       Impact factor: 16.240

2.  Population genomics studies identify signatures of global dispersal and drug resistance in Plasmodium vivax.

Authors:  Daniel N Hupalo; Zunping Luo; Alexandre Melnikov; Patrick L Sutton; Peter Rogov; Ananias Escalante; Andrés F Vallejo; Sócrates Herrera; Myriam Arévalo-Herrera; Qi Fan; Ying Wang; Liwang Cui; Carmen M Lucas; Salomon Durand; Juan F Sanchez; G Christian Baldeviano; Andres G Lescano; Moses Laman; Celine Barnadas; Alyssa Barry; Ivo Mueller; James W Kazura; Alex Eapen; Deena Kanagaraj; Neena Valecha; Marcelo U Ferreira; Wanlapa Roobsoong; Wang Nguitragool; Jetsumon Sattabonkot; Dionicia Gamboa; Margaret Kosek; Joseph M Vinetz; Lilia González-Cerón; Bruce W Birren; Daniel E Neafsey; Jane M Carlton
Journal:  Nat Genet       Date:  2016-06-27       Impact factor: 38.330

3.  Adaptive protein evolution at the Adh locus in Drosophila.

Authors:  J H McDonald; M Kreitman
Journal:  Nature       Date:  1991-06-20       Impact factor: 49.962

4.  BepiPred-2.0: improving sequence-based B-cell epitope prediction using conformational epitopes.

Authors:  Martin Closter Jespersen; Bjoern Peters; Morten Nielsen; Paolo Marcatili
Journal:  Nucleic Acids Res       Date:  2017-07-03       Impact factor: 16.971

5.  Genome-wide scans for the identification of Plasmodium vivax genes under positive selection.

Authors:  Hai-Mo Shen; Shen-Bo Chen; Yue Wang; Bin Xu; Eniola Michael Abe; Jun-Hu Chen
Journal:  Malar J       Date:  2017-06-06       Impact factor: 2.979

6.  Temporal genetic changes in Plasmodium vivax apical membrane antigen 1 over 19 years of transmission in southern Mexico.

Authors:  Alejandro Flores-Alanis; Lilia González-Cerón; Frida Santillán; Cecilia Ximenez; Marco A Sandoval; René Cerritos
Journal:  Parasit Vectors       Date:  2017-05-02       Impact factor: 3.876

7.  Blood-stage Plasmodium vivax antibody dynamics in a low transmission setting: A nine year follow-up study in the Amazon region.

Authors:  Camilla V Pires; Jessica R S Alves; Barbara A S Lima; Ruth B Paula; Helena L Costa; Leticia M Torres; Taís N Sousa; Irene S Soares; Bruno A M Sanchez; Cor J F Fontes; Francis B Ntumngia; John H Adams; Flora S Kano; Luzia H Carvalho
Journal:  PLoS One       Date:  2018-11-12       Impact factor: 3.240

8.  An Antibody Screen of a Plasmodium vivax Antigen Library Identifies Novel Merozoite Proteins Associated with Clinical Protection.

Authors:  Camila T França; Jessica B Hostetler; Sumana Sharma; Michael T White; Enmoore Lin; Benson Kiniboro; Andreea Waltmann; Andrew W Darcy; Connie S N Li Wai Suen; Peter Siba; Christopher L King; Julian C Rayner; Rick M Fairhurst; Ivo Mueller
Journal:  PLoS Negl Trop Dis       Date:  2016-05-16

9.  Generation of Plasmodium falciparum parasite-inhibitory antibodies by immunization with recombinantly-expressed CyRPA.

Authors:  Paola Favuzza; Simon Blaser; Anita M Dreyer; Guy Riccio; Marco Tamborrini; Ralf Thoma; Hugues Matile; Gerd Pluschke
Journal:  Malar J       Date:  2016-03-15       Impact factor: 2.979

10.  Ookinete-Specific Genes and 18S SSU rRNA Evidenced in Plasmodium vivax Selection and Adaptation by Sympatric Vectors.

Authors:  Lilia González-Cerón; Mario H Rodríguez; Marbella T Ovilla-Muñoz; Frida Santillán-Valenzuela; Juan E Hernández-Ávila; María Carmen Rodríguez; Jesús Martínez-Barnetche; Cuauhtémoc Villarreal-Treviño
Journal:  Front Genet       Date:  2020-02-21       Impact factor: 4.599

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  1 in total

1.  Genetic Diversity of Plasmodium vivax Cysteine-Rich Protective Antigen (PvCyRPA) in Field Isolates from Five Different Areas of the Brazilian Amazon.

Authors:  Lana Bitencourt Chaves; Glaucia de Oliveira Guimarães; Daiana de Souza Perce-da-Silva; Dalma Maria Banic; Paulo Renato Rivas Totino; Ricardo Luiz Dantas Machado; Rodrigo Nunes Rodrigues-da-Silva; Lilian Rose Pratt-Riccio; Cláudio Tadeu Daniel-Ribeiro; Josué da Costa Lima-Junior
Journal:  Genes (Basel)       Date:  2021-10-21       Impact factor: 4.096

  1 in total

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