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A Ham1p-Dependent Mechanism and Modulation of the Pyrimidine Biosynthetic Pathway can both Confer Resistance to 5-Fluorouracil in Yeast

机译:依赖Ham1p的机制和嘧啶生物合成途径的调控均可赋予酵母对5-氟尿嘧啶的抗性

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摘要

5-Fluorouracil (5-FU) is an anticancer drug and pyrimidine analogue. A problem in 5-FU therapy is acquired resistance to the drug. To find out more about the mechanisms of resistance, we screened a plasmid library in yeast for genes that confer 5-FU resistance when overexpressed. We cloned five genes: CPA1, CPA2, HMS1, YAE1 and YJL055W. CPA1 and CPA2 encode a carbamoyl phosphate synthase involved in arginine biosynthesis and HMS1 a helix-loop-helix transcription factor. Our results suggest that CPA1, CPA2, and HMS1 confer 5-FU resistance by stimulating pyrimidine biosynthesis. Thus, they are unable to confer 5-FU resistance in a ura2 mutant, and inhibit the uptake and incorporation into RNA of both uracil and 5-FU. In contrast, YAE1 and YJL055W confer 5-FU resistance in a ura2 mutant, and selectively inhibit incorporation into RNA of 5-FU but not uracil. YAE1 is the strongest resistance gene, but it partially depends on YJL055W for its function. This suggests that YAE1 and YJL055W function together in a novel mechanism for detoxification of 5-FU and other pyrimidine analogs. Yae1p belongs to a small protein family with only two members, which are conserved in all eukaryotes examined. One of the human homologs, TAOS1, is overexpressed in oral carcinomas.
机译:5-氟尿嘧啶(5-FU)是抗癌药和嘧啶类似物。 5-FU治疗中的一个问题是对药物的耐药性。为了找到更多有关抗性机制的信息,我们筛选了酵母中的质粒文库,寻找过表达时赋予5-FU抗性的基因。我们克隆了五个基因:CPA1,CPA2,HMS1,YAE1和YJL055W。 CPA1和CPA2编码参与精氨酸生物合成的氨基甲酰磷酸合酶,而HMS1编码螺旋-环-螺旋转录因子。我们的结果表明,CPA1,CPA2和HMS1通过刺激嘧啶的生物合成赋予了5-FU耐药性。因此,它们不能在ura2突变体中赋予5-FU抗性,并且不能抑制尿嘧啶和5-FU两者的摄取和掺入RNA。相反,YAE1和YJL055W在ura2突变体中赋予5-FU抗性,并选择性地抑制5-FU掺入RNA,但不抑制尿嘧啶。 YAE1是最强的抗性基因,但其功能部分取决于YJL055W。这表明YAE1和YJL055W在5-FU和其他嘧啶类似物的解毒新机制中共同发挥作用。 Yae1p属于一个只有两个成员的小蛋白质家族,在所有检查的真核生物中都是保守的。人类同源物之一TAOS1在口腔癌中过表达。

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