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Changes in enzyme activity and expression of DHFR of Toxoplasma gondii by antifolates

机译:叶酸对弓形虫酶活性和DHFR表达的影响。

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摘要

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 µM MTX. DHFR activity was 77.4% in the 1st passage (1 µM). 82.2% in the 4th passage (10 µM), and 141.3% in the 7th passage (100 µM). 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.
机译:通过测量二氢叶酸还原酶(DHFR)活性,DHFR mRNA的数量和单链构象多态性(SSCP)模式,研究了弓形虫对叶酸的反应。乙胺嘧啶(PYM)和甲氨蝶呤(MTX)作为抗叶酸药进行了测试。当弓形虫用PYM处理时,随着PYM浓度的增加,活力降低,DHFR活性随着传代的进行而趋于增加,表达的mRNA的数量也随着传代的增加而增加。 MTX浓度的增加降低了弓形虫的生存能力,但直到100 µM MTX,它仍保持40%以上。在第一代(1 µM)中,DHFR活性为77.4%。第四遍(10 µM)为82.2%,第七遍(100 µM)为141.3%。但是,在暴露于PYM和MTX的弓形虫的SSCP模式中均未检测到变化。这些结果表明,刚地弓形虫对PYM的反应受转录水平的调节,而在MTX中,刚地弓形虫的生存力来自DHFR活性的增加。

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