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Single-Copy IMH3 Allele Is Sufficient To Confer Resistance to Mycophenolic Acid in Candida albicans and To Mediate Transformation of Clinical Candida Species

机译:单拷贝IMH3等位基因足以赋予白色念珠菌对霉酚酸的抗性并介导临床念珠菌物种的转化。

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摘要

Parasexual genetic analysis of Candida albicans utilized the dominant selectable marker that conferred resistance to mycophenolic acid. We cloned and sequenced the IMH3r gene from C. albicans strain 1006, which was previously identified as resistant to mycophenolic acid (MPA) (A. K. Goshorn and S. Scherer, Genetics 123:213–218, 1989). MPA is an inhibitor of IMP dehydrogenase, an enzyme necessary for the de novo biosynthesis of GMP. G. A. Kohler et al. (J. Bacteriol. 179:2331–2338, 1997) have shown that the wild-type IMH3 gene, when expressed in high copy number, will confer resistance to this antibiotic. We demonstrate that the IMH3r gene from strain 1006 has three amino acid changes, two of which are nonconservative, and demonstrate that at least two of the three mutations are required to confer resistance to MPA. We used this gene as a dominant selectable marker in clinical isolates of C. albicans and Candida tropicalis. We also identified the presence of autonously replicating sequence elements that permit autonomous replication in the promoter region of this gene. Finally, we found the excision of a φ-type long terminal repeat element outside the IMH3 open reading frame of the gene in some strains. We used the IMH3r allele to disrupt one allele of ARG4 in two clinical isolates, WO-1 and FC18, thus demonstrating that a single ectopic integration of this dominant selectable marker is sufficient to confer resistance to MPA.
机译:白色念珠菌的无性生殖遗传分析利用了主要的选择标记,该标记赋予了对霉酚酸的抗性。我们从白色念珠菌菌株1006中克隆了IMH3r基因并对其进行了测序,该菌株先前被鉴定为对霉酚酸(MPA)具有抗性(A. K. Goshorn和S. Scherer,遗传学123:213-218,1989)。 MPA是IMP脱氢酶的抑制剂,IMP脱氢酶是GMP从头生物合成所必需的酶。 G. A. Kohler等。 (J. Bacteriol。179:2331–2338,1997)表明,野生型IMH3基因以高拷贝数表达时,将赋予该抗生素抗药性。我们证明了来自菌株1006的IMH3r基因具有三个氨基酸变化,其中两个是非保守的,并且表明三个突变中的至少两个必须赋予MPA抗性。我们将该基因用作白色念珠菌和热带念珠菌临床分离物中的主要选择标记。我们还确定了自动复制序列元件的存在,该元件允许在该基因的启动子区域自主复制。最后,我们发现在某些菌株中,该基因的IMH3开放阅读框外有一个φ型长末端重复元件的切除。我们使用IMH3r等位基因在两个临床分离株WO-1和FC18中破坏了ARG4的一个等位基因,因此证明了该显性选择标记的单个异位整合足以赋予对MPA的抗性。

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