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Brief Communication

Genetic Polymorphisms in Plasmodium vivax Dihydrofolate Reductase and Dihydropteroate Synthase in Isolates from the Philippines, Bangladesh, and Nepal
Pimwan Thongdee, Jiraporn Kuesap, Kanchana Rungsihirunrat, Shyam Prakash Dumre, Effie Espino, Harald Noedl, Kesara Na-Bangchang
Korean J Parasitol 2015;53(2):227-232.
Published online April 22, 2015
DOI: https://doi.org/10.3347/kjp.2015.53.2.227
Genetic polymorphisms of pvdhfr and pvdhps genes of Plasmodium vivax were investigated in 83 blood samples collected from patients in the Philippines, Bangladesh, and Nepal. The SNP-haplotypes of the pvdhfr gene at the amino acid positions 13, 33, 57, 58, 61, 117, and 173, and that of the pvdhps gene at the positions 383 and 553 were analyzed by nested PCR-RFLP. Results suggest diverse polymorphic patterns of pvdhfr alone as well as the combination patterns with pvdhps mutant alleles in P. vivax isolates collected from the 3 endemic countries in Asia. All samples carried mutant combination alleles of pvdhfr and pvdhps. The most prevalent combination alleles found in samples from the Philippines and Bangladesh were triple mutant pvdhfr combined with single mutant pvdhps allele and triple mutant pvdhfr combined with double wild-type pvdhps alleles, respectively. Those collected from Nepal were quadruple mutant pvdhfr combined with double wild-type pvdhps alleles. New alternative antifolate drugs which are effective against sulfadoxine-pyrimethamine (SP)-resistant P. vivax are required.

Citations

Citations to this article as recorded by  Crossref logo
  • Molecular surveillance of antifolate drug resistance markers in Plasmodium vivax from Khyber Pakhtunkhwa province, northwest Pakistan
    Thu Hằng Nguyễn, Hương Giang Lê, Tuấn Cường Võ, Đăng Thùy Dương Nguyễn, Kim Oanh Nguyễn, Minkyoung Cho, Youn-Kyoung Goo, Sahib Gul Afridi, Byoung-Kuk Na
    Acta Tropica.2025; 264: 107583.     CrossRef
  • Genetic Diversity of Plasmodium vivax Merozoite Surface Protein-3 Alpha and Beta from Diverse Geographic Areas of Thailand
    Jiraporn Kuesap, Kanchana Rungsihirunrat, Wanna Chaijaroenkul, Mathirut Mungthin
    Japanese Journal of Infectious Diseases.2022; 75(3): 241.     CrossRef
  • Geographical spread and structural basis of sulfadoxine-pyrimethamine drug-resistant malaria parasites
    Rini Chaturvedi, Jyoti Chhibber-Goel, Ishika Verma, Sreehari Gopinathan, Suhel Parvez, Amit Sharma
    International Journal for Parasitology.2021; 51(7): 505.     CrossRef
  • Molecular monitoring of dihydrofolatereductase (dhfr) and dihydropteroatesynthetase (dhps) associated with sulfadoxine-pyrimethamine resistance in Plasmodium vivax isolates of Palawan, Philippines
    Alison Paolo Bareng, Fe Esperanza Espino, Wanna Chaijaroenkul, Kesara Na-Bangchang
    Acta Tropica.2018; 180: 81.     CrossRef
  • Mutations of pvdhfr and pvdhps genes in vivax endemic-malaria areas in Kota Marudu and Kalabakan, Sabah
    Umi Rubiah Sastu, Noor Rain Abdullah, Nor Azrina Norahmad, Muhammad Nor Farhan Saat, Prem Kumar Muniandy, Jenarun Jelip, Moizin Tikuson, Norsalleh Yusof, Hasidah Mohd Sidek
    Malaria Journal.2016;[Epub]     CrossRef
  • Geographic distribution of amino acid mutations in DHFR and DHPS in Plasmodium vivax isolates from Lao PDR, India and Colombia
    Naowarat Saralamba, Supatchara Nakeesathit, Mayfong Mayxay, Paul N. Newton, Lyda Osorio, Jung-Ryong Kim, Nicholas J. White, Nicholas P. J. Day, Arjen M. Dondorp, Mallika Imwong
    Malaria Journal.2016;[Epub]     CrossRef
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Original Articles
Plasmodium vivax dhfr Mutations among Isolates from Malarious Areas of Iran
Jalal Zaman, Abbas Shahbazi, Mohammad Asgharzadeh
Korean J Parasitol 2011;49(2):125-131.
Published online June 14, 2011
DOI: https://doi.org/10.3347/kjp.2011.49.2.125

The use of sulfadoxine and pyrimethamine (SP) for treatment of vivax malaria is uncommon in most malarious areas, but Plasmodium vivax isolates are exposed to SP because of mixed infections with other Plasmodium species. As P. vivax is the most prevalent species of human malaria parasites in Iran, monitoring of resistance of the parasite against the drug is necessary. In the present study, 50 blood samples of symptomatic patients were collected from 4 separated geographical regions of south-east Iran. Point mutations at residues 57, 58, 61, and 117 were detected by the PCR-RFLP method. Polymorphism at positions 58R, 117N, and 117T of P. vivax dihydrofolate reductase (Pvdhfr) gene has been found in 12%, 34%, and 2% of isolates, respectively. Mutation at residues F57 and T61 was not detected. Five distinct haplotypes of the Pvdhfr gene were demonstrated. The 2 most prevalent haplotypes were F57S58T61S117 (62%) and F57S58T61N117 (24%). Haplotypes with 3 and 4 point mutations were not found. The present study suggested that P. vivax in Iran is under the pressure of SP and the sensitivity level of the parasite to SP is diminishing and this fact must be considered in development of malaria control programs.

Citations

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  • Molecular evaluation of pvdhfr and pvmdr-1 mutants in Plasmodium vivax isolates after treatment with sulfadoxine/pyrimethamine and chloroquine in Iran during 2001–2016
    Mahdi Parsaei, Ahmad Raeisi, Adel Spotin, Abbas Shahbazi, Mahmoud Mahami-Oskouei, Teimour Hazratian, Alireza Salimi Khorashad, Jalal Zaman, Ahad Bazmani, Sedighe Sarafraz
    Infection, Genetics and Evolution.2018; 64: 70.     CrossRef
  • Mutational Analysis of Plasmodium vivax dhfr Gene Among Cases in South East of Iran
    Hadi Mirahmadi, Maryam Rafee, Jalal Zaman, Ahmad Mehravaran, Reza Shafiei
    Jundishapur Journal of Microbiology.2017;[Epub]     CrossRef
  • MOLECULAR SURVEILLANCE OF Plasmodium vivax AND Plasmodium falciparum DHFR MUTATIONS IN ISOLATES FROM SOUTHERN IRAN
    Khojasteh SHARIFI-SARASIABI, Ali HAGHIGHI, Bahram KAZEMI, Niloofar TAGHIPOUR, Ehsan Nazemalhosseini MOJARAD, Latif GACHKAR
    Revista do Instituto de Medicina Tropical de São Paulo.2016;[Epub]     CrossRef
  • 7,767 View
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Changes in enzyme activity and expression of DHFR of Toxoplasma gondii by antifolates
Eun-Jung Baek, Ho-Woo Nam
Korean J Parasitol 1998;36(3):191-198.
Published online September 20, 1998
DOI: https://doi.org/10.3347/kjp.1998.36.3.191

The responses to antifolates of Toxoplasma gondii were investigated by measuring the dihydrofolate reductase (DHFR) activity, quantity of DHFR mRNA, and single-strand conformational polymorphism (SSCP) pattern. Pyrimethamine (PYM) and methotrexate (MTX) were tested as antifolates. When T. gondii was treated with PYM, the viability was decreased by the increasing concentration of PYM, DHFR activity tended to increase as the passage proceeded, and the quantity of mRNA expressed was also increased according to passages. The viability of T. gondii was decreased by the increasing concentration of MTX, but it was maintained over 40% up to 100 ?M MTX. DHFR activity was 77.4% in the 1st passage (1 ?M). 82.2% in the 4th passage (10 ?M), and 141.3% in the 7th passage (100 ?M). But no changes were detected in SSCP pattern of T. gondii exposed to PYM and MTX, both. These results suggested that the response of T. gondii to PYM was regulated by transcriptional level and that, in MTX, the viability of T. gondii was derived from increasing DHFR activity.

Citations

Citations to this article as recorded by  Crossref logo
  • Hastened Fusion-Dependent Endosomal Escape Improves Activity of Delivered Enzyme Cargo
    Angel Luis Vázquez-Maldonado, Teresia Chen, Diego Rodriguez, Madeline Zoltek, Alanna Schepartz
    ACS Central Science.2025; 11(4): 574.     CrossRef
  • The effect of race and supplementation on maternal and umbilical cord plasma folates
    Devika Maulik, Leon van Haandel, Jenifer Allsworth, Kris S. Chaisanguanthum, John D. Yeast, J. Steven Leeder
    The Journal of Maternal-Fetal & Neonatal Medicine.2021; 34(18): 3057.     CrossRef
  • Toxoplasma gondii is capable of exogenous folate transport
    Kristen M. Massimine, Lanxuan T. Doan, Chloé A. Atreya, Timothy T. Stedman, Karen S. Anderson, Keith A. Joiner, Isabelle Coppens
    Molecular and Biochemical Parasitology.2005; 144(1): 44.     CrossRef
  • 8,636 View
  • 61 Download
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