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Various cytosine/adenine permease homologues are involved in the toxicity of 5-fluorocytosine in Saccharomyces cerevisiae

机译:5-氟胞嘧啶在酿酒酵母中的毒性涉及多种胞嘧啶/腺嘌呤通透酶同系物

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5-Fluorocytosine (5-FC), a medically applied antifungal agent (Ancotil), is also active against the model organism Saccharomyces cerevisiae. 5-FC uptake in S. cerevisiae was considered to be mediated by the FCY2-encoded cytosine/adenine permease. By applying a highly sensitive assay, a low-level but dose-dependent toxicity of 5-FC in fcy2 mutants was detected, whereas cells deficient in the cytosine deaminase (encoded by FCY1), which is essential for intracellular conversion of 5-FC to 5-fluorouracil, display strong dose-independent resistance. Thus, an alternative, Fcy2-independent access pathway for 5-FC exists in S. cerevisiae. A genome-wide search for cytosine permease homologues identified two uncharacterized candidate genes, designated FCY21 and FCY22, both of which exhibit highest similarity to FCY2. Disruption of either FCY21 or FCY22 resulted in strains displaying low-level resistance, indicating the functional involvement of both gene products in 5-FC toxicity. When mutations in FCY21 or FCY22 were combined with the FCY2 disruption, both double mutants displayed stronger resistance when compared to the FCY2 mutant alone. Disruptions in all three permease genes consequently conferred the highest degree of resistance, not only towards 5-FC but also to the toxic adenine analogon 8-azaadenine. As residual 5-FC sensitivity was, however, even detectable in the fcy2 fcy21 fcy22 mutant, we analysed the relevance of other FCY2 homologues, i.e. TPN1, FUR4, DAL4, FUI1 and yOR071c, for 5-FC toxicity. Among these, Tpn1, Fur4 and the one encoded by yOR071c were found to contribute significantly to 5-FC toxicity, thus revealing alternative entry routes for 5-FC via other cytosine/adenine permease homologues.
机译:5-氟胞嘧啶(5-FC)是一种医学上应用的抗真菌剂(Ancotil),也对模型生物酿酒酵母具有活性。酿酒酵母中5-FC的摄取被认为是由FCY2编码的胞嘧啶/腺嘌呤通透酶介导的。通过应用高灵敏度的检测方法,检测到了Fcγ2突变体中5-FC的低水平但剂量依赖性毒性,而胞嘧啶脱氨酶(由FCY1编码)缺乏的细胞,这对于5-FC转化为5-FC至关重要5-氟尿嘧啶,显示出强的剂量依赖性耐药性。因此,酿酒酵母中存在5-FC的另一种独立于Fcγ2的独立通路。在全基因组中对胞嘧啶通透酶同源物的搜索确定了两个未表征的候选基因,命名为FCY21和FCY22,这两个基因与FCY2的相似性最高。 FCY21或FCY22的破坏导致菌株显示出低水平的抗性,表明这两种基因产物在5-FC毒性中的功能参与。当FCY21或FCY22中的突变与FCY2破坏相结合时,与单独的FCY2突变体相比,两个双突变体均显示出更强的抗性。因此,所有三个通透酶基因的破坏都赋予了最高程度的抗性,不仅对5-FC,而且对有毒的腺嘌呤类似物8-氮杂腺嘌呤都具有抗性。然而,由于甚至在fcy2 fcy21 fcy22突变体中也可以检测到残留的5-FC敏感性,因此我们分析了其他FCY2同源物,即TPN1,FUR4,DAL4,FUI1和yOR071c与5-FC毒性的相关性。其中,Tpn1,Fur4和由yOR071c编码的Tpn1,Fur4显着促进了5-FC的毒性,从而揭示了通过其他胞嘧啶/腺嘌呤通透酶同源物进入5-FC的替代途径。

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