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Shuttle vectors for facile gap repair cloning and integration into a neutral locus in Candida albicans

机译:在白色念珠菌中用于快速缺口修复的穿梭载体克隆并整合到中性位点

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摘要

Candida albicans is the most prevalent fungal pathogen of humans. The current techniques used to construct C. albicans strains require integration of exogenous DNA at ectopic locations, which can exert position effects on gene expression that can confound the interpretation of data from critical experiments such as virulence assays. We have identified a large intergenic region, NEUT5L, which facilitates the integration and expression of ectopic genes. To construct and integrate inserts into this novel locus, we re-engineered yeast/bacterial shuttle vectors by incorporating 550 bp of homology to NEUT5L. These vectors allow rapid, facile cloning through in vivo recombination (gap repair) in Saccharomyces cerevisiae and efficient integration of the construct into the NEUT5L locus. Other useful features of these vectors include a choice of three selectable markers (URA3, the recyclable URA3-dpl200 or NAT1), and rare restriction enzyme recognition sites for releasing the insert from the vector prior to transformation into C. albicans, thereby reducing the insert size and preventing integration of non-C. albicans DNA. Importantly, unlike the commonly used RPS1/RP10 locus, integration at NEUT5L has no negative effect on growth rates and allows native-locus expression levels, making it an ideal genomic locus for the integration of exogenous DNA in C. albicans.
机译:白色念珠菌是人类最普遍的真菌病原体。用于构建白色念珠菌菌株的当前技术需要在异位处整合外源DNA,这可能会对基因表达产生位置影响,从而可能混淆关键实验(如毒力测定)的数据解释。我们已经确定了一个大的基因间区域,NEUT5L,它促进了异位基因的整合和表达。为了构建插入片段并将其整合到这个新基因座中,我们通过整合550 bp的NEUT5L同源性,重新设计了酵母/细菌穿梭载体。这些载体允许通过在酿酒酵母中的体内重组(缺口修复)快速且容易地克隆,并且将构建体有效整合到NEUT5L基因座中。这些载体的其他有用功能包括三种选择标记(URA3,可循环利用的URA3-dpl200或NAT1)的选择,以及罕见的限制性内切酶识别位点,可在转化成白色念珠菌之前从载体上释放插入片段,从而减少插入片段大小并防止非C集成。白色的DNA。重要的是,与常用的RPS1 / RP10基因座不同,NEUT5L的整合对生长速率没有负面影响,并允许天然基因座表达水平,使其成为理想的基因组基因座,可用于外源DNA在白色念珠菌中的整合。

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