1.Plasmodium vivax dhfr Mutations among Isolates from Malarious Areas of Iran.
Jalal ZAMAN ; Abbas SHAHBAZI ; Mohammad ASGHARZADEH
The Korean Journal of Parasitology 2011;49(2):125-131
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.
Amino Acid Substitution/genetics
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Antimalarials/*pharmacology
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Drug Combinations
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*Drug Resistance
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Haplotypes
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Humans
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Iran
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Malaria, Vivax/*parasitology
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*Mutation, Missense
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Plasmodium vivax/*enzymology/genetics/isolation & purification
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Polymorphism, Genetic
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Pyrimethamine/*pharmacology
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Sulfadoxine/*pharmacology
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Tetrahydrofolate Dehydrogenase/*genetics
2.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
The Korean Journal of Parasitology 2015;53(2):227-232
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.
Amino Acid Sequence
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Bangladesh
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Base Sequence
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Dihydropteroate Synthase/*genetics
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Humans
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Malaria, Vivax/*parasitology
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Molecular Sequence Data
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Nepal
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Philippines
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Plasmodium vivax/*enzymology/*genetics/isolation & purification
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*Polymorphism, Genetic
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Tetrahydrofolate Dehydrogenase/*genetics
3.Aspartic proteases of Plasmodium vivax are highly conserved in wild isolates.
Byoung Kuk NA ; Eung Goo LEE ; Hyeong Woo LEE ; Shin Hyeong CHO ; Young An BAE ; Yoon KONG ; Jong Koo LEE ; Tong Soo KIM
The Korean Journal of Parasitology 2004;42(2):61-66
The plasmepsins are the aspartic proteases of malaria parasites. Treatment of aspartic protease inhibitor inhibits hemoglobin hydrolysis and blocks the parasite development in vitro suggesting that these proteases might be exploited their potentials as antimalarial drug targets. In this study, we determined the genetic variations of the aspartic proteases of Plasmodium vivax (PvPMs) of wild isolates. Two plasmepsins (PvPM4 and PvPM5) were cloned and sequenced from 20 P. vivax Korean isolates and two imported isolates. The sequences of the enzymes were highly conserved except a small number of amino acid substitutions did not modify key residues for the function or the structure of the enzymes. The high sequence conservations between the plasmepsins from the isolates support the notion that the enzymes could be reliable targets for new antimalarial chemotherapeutics.
Amino Acid Sequence
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Animals
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Aspartic Endopeptidases/*genetics
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Base Sequence
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Cloning, Molecular
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Conserved Sequence
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DNA, Protozoan/chemistry/genetics
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Human
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Molecular Sequence Data
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Plasmodium vivax/*enzymology/genetics/isolation & purification
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Polymerase Chain Reaction
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Sequence Alignment
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Sequence Analysis, DNA
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Support, Non-U.S. Gov't