首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >The pfmdr1 gene of Plasmodium falciparum confers cellular resistance to antimalarial drugs in yeast cells.
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The pfmdr1 gene of Plasmodium falciparum confers cellular resistance to antimalarial drugs in yeast cells.

机译:恶性疟原虫的pfmdr1基因赋予细胞对酵母细胞中抗疟疾药物的抗性。

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摘要

The exact role of the pfmdr1 gene in the emergence of drug resistance in the malarial parasite Plasmodium falciparum remains controversial. pfmdr1 is a member of the ATP binding cassette (ABC) superfamily of transporters that includes the mammalian P-glycoprotein family. We have introduced wild-type and mutant variants of the pfmdr1 gene in the yeast Saccharomyces cerevisiae and have analyzed the effect of pfmdr1 expression on cellular resistance to quinoline-containing antimalarial drugs. Yeast transformants expressing either wild-type or a mutant variant of mouse P-glycoprotein were also analyzed. Dose-response studies showed that expression of wild-type pfmdr1 causes cellular resistance to quinine, quinacrine, mefloquine, and halofantrine in yeast cells. Using quinacrine as substrate, we observed that increased resistance to this drug in pfmdr1 transformants was associated with decreased cellular accumulation and a concomitant increase in drug release from preloaded cells. The introduction of amino acid polymorphisms in TM11 of Pgh-1 (pfmdr1 product) associated with drug resistance in certain field isolates of P. falciparum abolished the capacity of this protein to confer drug resistance. Thus, these findings suggest that Pgh-1 may act as a drug transporter in a manner similar to mammalian P-glycoprotein and that sequence variants associated with drug-resistance pfmdr1 alleles behave as loss of function mutations.
机译:pfmdr1基因在疟疾寄生虫恶性疟原虫耐药性出现中的确切作用仍存在争议。 pfmdr1是包括哺乳动物P-糖蛋白家族在内的转运蛋白ATP结合盒(ABC)超家族的成员。我们在酵母中引入了pfmdr1基因的野生型和突变体,并分析了pfmdr1表达对细胞对含喹啉抗疟药耐药性的影响。还分析了表达野生型或小鼠P-糖蛋白突变体的酵母转化体。剂量反应研究表明,野生型pfmdr1的表达会导致细胞对酵母细胞中的奎宁,奎纳克林,甲氟喹和卤芬汀产生抗性。使用奎纳克林作为底物,我们观察到pfmdr1转化体对该药物的耐药性增加与细胞蓄积减少以及预载细胞的药物释放伴随增加有关。在恶性疟原虫的某些田间分离株中,Pgh-1(pfmdr1产物)的TM11中的氨基酸多态性与耐药性有关,从而消除了该蛋白赋予耐药性的能力。因此,这些发现表明,Pgh-1可能以类似于哺乳动物P-糖蛋白的方式充当药物转运蛋白,并且与抗药性pfmdr1等位基因相关的序列变体表现为功能突变。

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