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首页> 外文期刊>Microbiology >Candida albicans UPC2 is transcriptionally induced in response to antifungal drugs and anaerobicity through Upc2p-dependent and -independent mechanisms
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Candida albicans UPC2 is transcriptionally induced in response to antifungal drugs and anaerobicity through Upc2p-dependent and -independent mechanisms

机译:通过UPC2P依赖性和依赖性机制响应抗真菌药物和厌氧性,Candida albicans UPC2致力于抗真菌药物和厌氧性

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Many genes in the Candida albicans ergosterol biosynthetic pathway are controlled by the transcriptional activator Upc2p, which is upregulated in the presence of azole drugs and has been suggested to regulate its own transcription by an autoregulatory mechanism. The UPC2 promoter was cloned upstream of a luciferase reporter gene (RLUC). UPC2–RLUC activity was induced in response to ergosterol biosynthesis inhibitors and in response to anaerobicity. Under both conditions, induction correlates with the magnitude of sterol depletion. Azole inducibility in the parental strain was approximately 100-fold, and in a UPC2 homozygous deletion strain was 17-fold, suggesting that, in addition to autoregulation, UPC2 transcription is controlled by a novel, Upc2p-independent mechanism(s). Curiously, basal UPC2–RLUC activity was fivefold higher in the deletion strain, which may be an indirect consequence of the lower sterol level in this strain, or a direct consequence of repression by an autoregulatory mechanism. These results suggest that transcriptional regulation of UPC2 expression is important in the response to antifungal drugs, and that this regulation occurs through Upc2p-dependent as well as novel Upc2p-independent mechanisms.
机译:念珠菌蛋白胶中的许多基因是通过转录活化剂UPC2P控制的,在唑类药物存在下上调,并提出通过自身疗养机制调节自己的转录。 UPC2启动子在荧光素酶报告基因(Rluc)的上游克隆。响应Ergosterol生物合成抑制剂和响应厌氧性致厌氧诱导UPC2-RLUC活性。在两个条件下,诱导与甾醇耗尽的幅度相关。亲本菌株中的唑脲型诱导性约为100倍,并且在UPC2纯合的缺失菌株中为17倍,表明除了自身调节之外,UPC2转录是由新的,UPC2P独立机制控制的。好奇地,缺失菌株中的基础UPC2-RLUC活性较高,这可能是该菌株中甾醇水平的间接后果,或通过自身调节机制直接后果。这些结果表明UPC2表达的转录调节对于对抗真菌药物的反应是重要的,并且该调节通过UPC2P依赖性以及新的UPC2P独立机制发生。

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