Sulfadoxine resistance in Plasmodium vivax is associated with a specific amino acid in dihydropteroate synthase at the putative sulfadoxine-binding site
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作者:
Korsinczky, M
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机构:Australian Army Malaria Inst, Dept Drug Resistance & Diagnost, Enoggera, Qld 4051, Australia
Korsinczky, M
Fischer, K
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机构:Australian Army Malaria Inst, Dept Drug Resistance & Diagnost, Enoggera, Qld 4051, Australia
Fischer, K
Chen, NH
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机构:Australian Army Malaria Inst, Dept Drug Resistance & Diagnost, Enoggera, Qld 4051, Australia
Chen, NH
Baker, J
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机构:Australian Army Malaria Inst, Dept Drug Resistance & Diagnost, Enoggera, Qld 4051, Australia
Baker, J
Rieckmann, K
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机构:Australian Army Malaria Inst, Dept Drug Resistance & Diagnost, Enoggera, Qld 4051, Australia
Rieckmann, K
Cheng, Q
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机构:Australian Army Malaria Inst, Dept Drug Resistance & Diagnost, Enoggera, Qld 4051, Australia
Cheng, Q
机构:
[1] Australian Army Malaria Inst, Dept Drug Resistance & Diagnost, Enoggera, Qld 4051, Australia
[2] Univ Queensland, Inst Mol Biosci, St Lucia, Qld 4067, Australia
[3] PO Royal Brisbane Hosp, Queensland Inst Med Res, Malaria & Scabies Grp, Brisbane, Qld 4029, Australia
Sulfadoxine is predominantly used in combination with pyrimethamine, commonly known as Fansidar, for the treatment of Plasmodium falciparum. This combination is usually less effective against Plasmodium vivax, probably due to the innate refractoriness of parasites to the sulfadoxine component. To investigate this mechanism of resistance by P. vivax to sulfadoxine, we cloned and sequenced the P. vivax dhps (pvdhps) gene. The protein sequence was determined, and three-dimensional homology models of dihydropteroate synthase (DHPS) from P. vivax as well as P. falciparum were created. The docking of sulfadoxine to the two DHPS models allowed us to compare contact residues in the putative sulfadoxine-binding site in both species. The predicted sulfadoxine-binding sites between the species differ by one residue, V585 in P. vivax, equivalent to A613 in P. falciparum. V585 in P. vivax is predicted by energy minimization to cause a reduction in binding of sulfadoxine to DHPS in P. vivax compared to P. falciparum. Sequencing dhps genes from a limited set of geographically different P. vivax isolates revealed that V585 was present in all of the samples, suggesting that V585 may be responsible for innate resistance of P. vivax to sulfadoxine. Additionally, amino acid mutations were observed in some P. vivax isolates in positions known to cause resistance in P. falciparum, suggesting that, as in P. falciparum, these mutations are responsible for acquired increases in resistance of P. vivax to sulfadoxine.
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SLOAN KETTERING MEM CANC CTR, DIV MOLEC BIOL, DEWITT WALLACE RES LAB, NEW YORK, NY 10021 USASLOAN KETTERING MEM CANC CTR, DIV MOLEC BIOL, DEWITT WALLACE RES LAB, NEW YORK, NY 10021 USA
DEBRUIN, D
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LANZER, M
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SLOAN KETTERING MEM CANC CTR, DIV MOLEC BIOL, DEWITT WALLACE RES LAB, NEW YORK, NY 10021 USASLOAN KETTERING MEM CANC CTR, DIV MOLEC BIOL, DEWITT WALLACE RES LAB, NEW YORK, NY 10021 USA
LANZER, M
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RAVETCH, JV
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SLOAN KETTERING MEM CANC CTR, DIV MOLEC BIOL, DEWITT WALLACE RES LAB, NEW YORK, NY 10021 USASLOAN KETTERING MEM CANC CTR, DIV MOLEC BIOL, DEWITT WALLACE RES LAB, NEW YORK, NY 10021 USA
机构:
SLOAN KETTERING MEM CANC CTR, DIV MOLEC BIOL, DEWITT WALLACE RES LAB, NEW YORK, NY 10021 USASLOAN KETTERING MEM CANC CTR, DIV MOLEC BIOL, DEWITT WALLACE RES LAB, NEW YORK, NY 10021 USA
DEBRUIN, D
;
LANZER, M
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机构:
SLOAN KETTERING MEM CANC CTR, DIV MOLEC BIOL, DEWITT WALLACE RES LAB, NEW YORK, NY 10021 USASLOAN KETTERING MEM CANC CTR, DIV MOLEC BIOL, DEWITT WALLACE RES LAB, NEW YORK, NY 10021 USA
LANZER, M
;
RAVETCH, JV
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SLOAN KETTERING MEM CANC CTR, DIV MOLEC BIOL, DEWITT WALLACE RES LAB, NEW YORK, NY 10021 USASLOAN KETTERING MEM CANC CTR, DIV MOLEC BIOL, DEWITT WALLACE RES LAB, NEW YORK, NY 10021 USA