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Tetracycline-Inducible Gene Expression and Gene Deletion in Candida albicans

机译:四环素诱导的基因表达和基因缺失白色念珠菌。

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The genetic analysis of Candida albicans, the major fungal pathogen of humans, is hampered by its diploid genome, the absence of a normal sexual cycle, and a nonstandard codon usage. Although effective methods to study gene function have been developed in the past years, systems to control gene expression in C. albicans are limited. We have established a system that allows induction of gene expression in C. albicans by the addition of tetracycline (Tet). By fusing genetically modified versions of the reverse Tet repressor from Escherichia coli and the transcription activation domain of the Gal4 protein from Saccharomyces cerevisiae, a C. albicans-adapted reverse Tet-dependent transactivator (rtTA) was created that was expressed from the constitutive ADH1 or the opaque-specific OP4 promoter. To monitor Tet-inducible gene expression, the caGFP reporter gene was placed under the control of a Tet-dependent promoter, obtained by fusing a minimal promoter from C. albicans to seven copies of the Tet operator sequence. Fluorescence of the cells demonstrated that gene expression could be efficiently induced by the addition of doxycycline in yeast, hyphal, and opaque cells of C. albicans. The Tet-inducible gene expression system was then used to manipulate the behavior of the various growth forms of C. albicans. Tet-induced expression of a dominant-negative CDC42 allele resulted in growth arrest as large, multinucleate cells. Filamentous growth was efficiently inhibited under all tested hyphal-growth-promoting conditions by Tet-inducible expression of the NRG1 repressor. Tet-induced expression of the MTL>a1 gene in opaque cells of an MTLα strain forced the cells to switch to the white phase, whereas Tet-induced expression of the MTL>a2 transcription factor induced shmooing. When the ecaFLP gene, encoding the site-specific recombinase FLP, was placed under the control of the Tet-dependent promoter, Tet-inducible deletion of genes which were flanked by the FLP target sequences was achieved with high efficiency to generate conditional null mutants. In combination with the dominant selection marker caSAT1, the Tet-inducible gene expression system was also applied in C. albicans wild-type strains, including drug-resistant clinical isolates that overexpressed the MDR1, CDR1, and CDR2 multidrug efflux pumps. This system, therefore, allows a growth medium-independent, Tet-inducible expression and deletion of genes in C. albicans and provides a convenient, versatile new tool to study gene function and manipulate cellular behavior in this model pathogenic fungus.
机译:人类主要真菌病原体白色念珠菌的遗传分析受到其二倍体基因组,缺乏正常性循环和非标准密码子使用的阻碍。尽管在过去几年中已经开发出研究基因功能的有效方法,但是用于控制 C基因表达的系统。白化病是有限的。我们已经建立了一个允许在 C中诱导基因表达的系统。通过添加四环素(Tet)而形成白色。通过融合大肠杆菌(ems)的反向Tet阻遏物的基因修饰版本和啤酒酵母(em)C的酿酒酵母(Gem)的Gal4蛋白的转录激活域。创建了由白色组成的反向Tet依赖反式激活因子(rtTA),该激活因子由组成型 ADH1 或不透明的 OP4 启动子表达。为了监测Tet诱导型基因的表达,将 caGFP 报告基因置于Tet依赖性启动子的控制下,该启动子通过融合来自 C的最小启动子而获得。白色字母复制到Tet算子序列的七个副本。细胞的荧光表明,在酵母,菌丝和不透明细胞中添加多西环素可以有效地诱导基因表达。白色的。然后将Tet诱导型基因表达系统用于操纵 C各种生长形式的行为。白色的。 Tet诱导的显性阴性 CDC42 等位基因的表达导致大型多核细胞的生长停滞。通过Tet诱导的 NRG1 阻遏物表达,在所有测试的促进菌丝生长的条件下均可有效抑制丝状生长。 Tet诱导 MTL α菌株不透明细胞中 MTL > a 1 基因的表达迫使细胞转换为白相,而Tet诱导的 MTL > a 2 转录因子的表达引起皱纹。当将编码位点特异性重组酶FLP的 ecaFLP 基因置于Tet依赖性启动子的控制下时,以Fet靶序列为侧翼的基因的Tet诱导型缺失得以实现产生条件无效突变体的效率。结合显性选择标记 caSAT1 ,在 C中也应用了Tet诱导型基因表达系统。 albicans 野生型菌株,包括耐药的临床分离株,它们过度表达了 MDR1 CDR1 CDR2 多药外排泵。因此,该系统允许在 C中独立于生长培养基,Tet诱导的基因表达和缺失。白色念珠菌,并提供了一种方便,通用的新工具来研究这种模型致病真菌中的基因功能并操纵其细胞行为。

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