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首页> 外文期刊>Antimicrobial agents and chemotherapy. >Cloning, expression, and characterization of Babesia gibsoni dihydrofolate reductase-thymidylate synthase: inhibitory effect of antifolates on its catalytic activity and parasite proliferation.
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Cloning, expression, and characterization of Babesia gibsoni dihydrofolate reductase-thymidylate synthase: inhibitory effect of antifolates on its catalytic activity and parasite proliferation.

机译:巴贝斯赤霉病菌二氢叶酸还原酶-胸苷酸合酶的克隆,表达和表征:抗叶酸对其催化活性和寄生虫增殖的抑制作用。

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摘要

Dihydrofolate reductase-thymidylate synthase (DHFR-TS) is a well-validated antifolate drug target in certain pathogenic apicomplexans, but not in the genus Babesia, including Babesia gibsoni. Therefore, we isolated, cloned, and expressed the wild-type B. gibsoni dhfr-ts gene in Escherichia coli and evaluated the inhibitory effect of antifolates on its enzyme activity, as well as on in vitro parasite growth. The full-length gene consists of a 1,548-bp open reading frame encoding a 58.8-kDa translated peptide containing DHFR and TS domains linked together in a single polypeptide chain. Each domain contained active-site amino acid residues responsible for the enzymatic activity. The expressed soluble recombinant DHFR-TS protein was approximately 57 kDa after glutathione S-transferase (GST) cleavage, similar to an approximately 58-kDa native enzyme identified from the parasite merozoite. The non-GST fusion recombinant DHFR enzyme revealed K(m) values of 4.70 +/- 0.059 (mean +/- standard error of the mean) and 9.75 +/- 1.64 microM for dihydrofolic acid (DHF) and NADPH, respectively. Methotrexate was a more-potent inhibitor of the enzymatic activity (50% inhibition concentration [IC(50)] = 68.6 +/- 5.20 nM) than pyrimethamine (IC(50) = 55.0 +/- 2.08 microM) and trimethoprim (IC(50) = 50 +/- 12.5 microM). Moreover, the antifolates' inhibitory effects on DHFR enzyme activity paralleled their inhibition of the parasite growth in vitro, indicating that the B. gibsoni DHFR could be a model for studying antifolate compounds as potential drug candidates. Therefore, the B. gibsoni DHFR-TS is a molecular antifolate drug target.
机译:二氢叶酸还原酶-胸苷酸合酶(DHFR-TS)是某些病原性apicomplexans中有效的抗叶酸药物靶标,但在巴贝斯氏菌属(包括巴比斯氏菌)中却没有。因此,我们在大肠杆菌中分离,克隆并表达了野生型吉布森dhfr-ts基因,并评估了抗叶酸对其酶活性以及体外寄生虫生长的抑制作用。全长基因由一个1,548 bp的开放阅读框组成,该阅读框编码58.8 kDa的翻译肽,其中包含在单个多肽链中连接在一起的DHFR和TS结构域。每个结构域包含负责酶活性的活性位点氨基酸残基。谷胱甘肽S-转移酶(GST)切割后,表达的可溶性重组DHFR-TS蛋白约为57 kDa,类似于从寄生虫裂殖子鉴定出的约58 kDa天然酶。非GST融合重组DHFR酶显示二氢叶酸​​(DHF)和NADPH的K(m)值分别为4.70 +/- 0.059(平均值的平均值+/-标准误差)和9.75 +/- 1.64 microM。甲氨蝶呤是酶活性的强效抑制剂(50%抑制浓度[IC(50)] = 68.6 +/- 5.20 nM),比乙胺嘧啶(IC(50)= 55.0 +/- 2.08 microM)和甲氧苄氨嘧啶(IC( 50)= 50 +/- 12.5 microM)。此外,抗叶酸药物对DHFR酶活性的抑制作用与其在体外对寄生虫生长的抑制作用平行,这表明长柄双歧杆菌DHFR可以作为研究抗叶酸化合物作为潜在候选药物的模型。因此,吉布森双歧杆菌DHFR-TS是分子抗叶酸药物靶标。

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