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首页> 外文期刊>Antimicrobial agents and chemotherapy. >Molecular Mechanisms of Primary Resistance to Flucytosine in Candida albicans.
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Molecular Mechanisms of Primary Resistance to Flucytosine in Candida albicans.

机译:白念珠菌对氟胞嘧啶的基本抗性的分子机制。

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Primary resistance in Candida albicans to flucytosine (5-FC) was investigated in 25 strains by identifying and sequencing the genes FCA1, FUR1, FCY21, and FCY22, which code for cytosine deaminase, uracil phosphoribosyltransferase (UPRT), and two purine-cytosine permeases, respectively. These proteins are involved in pyrimidine salvage and 5-FC metabolism. An association between a polymorphic nucleotide and resistance to 5-FC was found within FUR1 where the substitution of cytidylate for thymidylate at nucleotide position 301 results in the replacement of arginine with cysteine at amino acid position 101 in UPRT. Isolates that are homozygous for this mutation display increased levels of resistance to 5-FC, whereas heterozygous isolates have reduced susceptibility. Three-dimensional protein modeling of UPRT suggests that the Arg101Cys mutation disturbs the quaternary structure of the enzyme, which is postulated to compromise optimal enzyme activity. A single resistant isolate, lacking the above polymorphism in FUR1, has a homozygous polymorphism in FCA1 that results in a glycine-to-aspartate substitution at position 28 in cytosine deaminase.
机译:通过鉴定和测序编码胞嘧啶脱氨酶,尿嘧啶磷酸核糖基转移酶(UPRT)和两个嘌呤-胞嘧啶通透酶的基因FCA1,FUR1,FCY21和FCY22的25个菌株,研究了白色念珠菌对氟胞嘧啶(5-FC)的主要耐药性, 分别。这些蛋白质参与嘧啶的挽救和5-FC代谢。在FUR1中发现了多态性核苷酸与对5-FC的抗性之间的关联,其中在核苷酸位置301上用胞苷取代胸苷取代了UPRT中在氨基酸位置101上的半胱氨酸置换了精氨酸。该突变为纯合的分离株显示出对5-FC的抗性水平提高,而杂合分离株的敏感性降低。 UPRT的三维蛋白质建模表明,Arg101Cys突变干扰了酶的四级结构,推测该四级结构会损害最佳酶活性。在FUR1中缺少上述多态性的单一抗性分离株在FCA1中具有纯合子多态性,导致胞嘧啶脱氨酶中28位的甘氨酸-天冬氨酸取代。

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