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Prevalence of pvmrp1 Polymorphisms and Its Contribution to Antimalarial Response
As more sporadic cases of chloroquine resistance occur (CQR) in Plasmodium vivax (P. vivax) malaria, molecular markers have become an important tool to monitor the introduction and spread of drug resistance. P. vivax multidrug resistance-associated protein 1 (PvMRP1), as one of the members of the AT...
Autores principales: | , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
MDPI
2022
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9394237/ https://www.ncbi.nlm.nih.gov/pubmed/35893540 http://dx.doi.org/10.3390/microorganisms10081482 |
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author | Yin, Yi Chen, Gangcheng Nyunt, Myat Htut Zhang, Meihua Liu, Yaobao Zhu, Guoding He, Xinlong Tian, Fang Cao, Jun Han, Eun-taek Lu, Feng |
author_facet | Yin, Yi Chen, Gangcheng Nyunt, Myat Htut Zhang, Meihua Liu, Yaobao Zhu, Guoding He, Xinlong Tian, Fang Cao, Jun Han, Eun-taek Lu, Feng |
author_sort | Yin, Yi |
collection | PubMed |
description | As more sporadic cases of chloroquine resistance occur (CQR) in Plasmodium vivax (P. vivax) malaria, molecular markers have become an important tool to monitor the introduction and spread of drug resistance. P. vivax multidrug resistance-associated protein 1 (PvMRP1), as one of the members of the ATP-binding cassette (ABC) transporters, may modulate this phenotype. In this study, we investigated the gene mutations and copy number variations (CNVs) in the pvmrp1 in 102 P. vivax isolates from China, the Republic of Korea (ROK), Myanmar, Papua New Guinea (PNG), Pakistan, the Democratic People’s Republic of Korea (PRK), and Cambodia. And we also obtained 72 available global pvmrp1 sequences deposited in the PlasmoDB database to investigate the genetic diversity, haplotype diversity, natural selection, and population structure of pvmrp1. In total, 29 single nucleotide polymorphisms reflected in 23 non-synonymous, five synonymous mutations and one gene deletion were identified, and CNVs were found in 2.9% of the isolates. Combined with the antimalarial drug susceptibility observed in the previous in vitro assays, except the prevalence of S354N between the two CQ sensitivity categories revealed a significant difference, no genetic mutations or CNVs associated with drug sensitivity were found. The genetic polymorphism analysis of 166 isolates worldwide found that the overall nucleotide diversity (π) of pvmrp1 was 0.0011, with 46 haplotypes identified (Hd = 0.9290). The ratio of non-synonymous to synonymous mutations (dn/ds = 0.5536) and the neutrality tests statistic Fu and Li’s D* test (Fu and Li’s D* = −3.9871, p < 0.02) suggests that pvmrp1 had evolved under a purifying selection. Due to geographical differences, genetic differentiation levels of pvmrp1 in different regions were different to some extent. Overall, this study provides a new idea for finding CQR molecular monitoring of P. vivax and provides more sequences of pvmrp1 in Asia for subsequent research. However, further validation is still needed through laboratory and epidemiological field studies of P. vivax samples from more regions. |
format | Online Article Text |
id | pubmed-9394237 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2022 |
publisher | MDPI |
record_format | MEDLINE/PubMed |
spelling | pubmed-93942372022-08-23 Prevalence of pvmrp1 Polymorphisms and Its Contribution to Antimalarial Response Yin, Yi Chen, Gangcheng Nyunt, Myat Htut Zhang, Meihua Liu, Yaobao Zhu, Guoding He, Xinlong Tian, Fang Cao, Jun Han, Eun-taek Lu, Feng Microorganisms Article As more sporadic cases of chloroquine resistance occur (CQR) in Plasmodium vivax (P. vivax) malaria, molecular markers have become an important tool to monitor the introduction and spread of drug resistance. P. vivax multidrug resistance-associated protein 1 (PvMRP1), as one of the members of the ATP-binding cassette (ABC) transporters, may modulate this phenotype. In this study, we investigated the gene mutations and copy number variations (CNVs) in the pvmrp1 in 102 P. vivax isolates from China, the Republic of Korea (ROK), Myanmar, Papua New Guinea (PNG), Pakistan, the Democratic People’s Republic of Korea (PRK), and Cambodia. And we also obtained 72 available global pvmrp1 sequences deposited in the PlasmoDB database to investigate the genetic diversity, haplotype diversity, natural selection, and population structure of pvmrp1. In total, 29 single nucleotide polymorphisms reflected in 23 non-synonymous, five synonymous mutations and one gene deletion were identified, and CNVs were found in 2.9% of the isolates. Combined with the antimalarial drug susceptibility observed in the previous in vitro assays, except the prevalence of S354N between the two CQ sensitivity categories revealed a significant difference, no genetic mutations or CNVs associated with drug sensitivity were found. The genetic polymorphism analysis of 166 isolates worldwide found that the overall nucleotide diversity (π) of pvmrp1 was 0.0011, with 46 haplotypes identified (Hd = 0.9290). The ratio of non-synonymous to synonymous mutations (dn/ds = 0.5536) and the neutrality tests statistic Fu and Li’s D* test (Fu and Li’s D* = −3.9871, p < 0.02) suggests that pvmrp1 had evolved under a purifying selection. Due to geographical differences, genetic differentiation levels of pvmrp1 in different regions were different to some extent. Overall, this study provides a new idea for finding CQR molecular monitoring of P. vivax and provides more sequences of pvmrp1 in Asia for subsequent research. However, further validation is still needed through laboratory and epidemiological field studies of P. vivax samples from more regions. MDPI 2022-07-22 /pmc/articles/PMC9394237/ /pubmed/35893540 http://dx.doi.org/10.3390/microorganisms10081482 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/). |
spellingShingle | Article Yin, Yi Chen, Gangcheng Nyunt, Myat Htut Zhang, Meihua Liu, Yaobao Zhu, Guoding He, Xinlong Tian, Fang Cao, Jun Han, Eun-taek Lu, Feng Prevalence of pvmrp1 Polymorphisms and Its Contribution to Antimalarial Response |
title | Prevalence of pvmrp1 Polymorphisms and Its Contribution to Antimalarial Response |
title_full | Prevalence of pvmrp1 Polymorphisms and Its Contribution to Antimalarial Response |
title_fullStr | Prevalence of pvmrp1 Polymorphisms and Its Contribution to Antimalarial Response |
title_full_unstemmed | Prevalence of pvmrp1 Polymorphisms and Its Contribution to Antimalarial Response |
title_short | Prevalence of pvmrp1 Polymorphisms and Its Contribution to Antimalarial Response |
title_sort | prevalence of pvmrp1 polymorphisms and its contribution to antimalarial response |
topic | Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9394237/ https://www.ncbi.nlm.nih.gov/pubmed/35893540 http://dx.doi.org/10.3390/microorganisms10081482 |
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