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首页> 外文期刊>Medical mycology: official publication of the International Society for Human and Animal Mycology >Antifungal activity of fluconazole in combination with lovastatin and their effects on gene expression in the ergosterol and prenylation pathways in Candida albicans.
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Antifungal activity of fluconazole in combination with lovastatin and their effects on gene expression in the ergosterol and prenylation pathways in Candida albicans.

机译:氟康唑联合洛伐他汀的抗真菌活性及其对白色念珠菌中麦角固醇和异戊烯化途径中基因表达的影响。

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摘要

The sterol pathway in Candida albicans is the target for several classes of antifungal drugs. Intermediates in the sterol pathway are involved in ergosterol synthesis, prenylation and dolichol synthesis. This study examines gene expression of the sterol pathway in response to lovastatin, an inhibitor of HMG-CoA reductase (Hmg1p), and fluconazole, an inhibitor of 14 alpha-lanosterol demethylase (Erg11p). Minimum inhibitory concentration (MIC) studies indicated that lovastatin acts synergistically with fluconazole in vitro. Semi-quantitative reverse transcriptase-polymerase chain reaction (RT-PCR) results indicated that genes in the early part of the sterol pathway, such as HMG1 and ERG20, did not alter expression in the presence of both lovastatin and fluconazole, whereas genes in the later part of the sterol pathway, such as ERG9 and ERG11, had increased expression in response to these drugs in mid-logarithmic growth. Genes involved in prenylation, such as RAM1 and RAM2, also respond to these drugs in mid-logarithmic growth, although another prenylation gene, CDC43, was not affected. After 24 h of growth, the relative expression of ERG20, ERG9, and ERG11 remained unchanged or increased in the presence of both drugs, while all other genes decreased in expression under all drug treatments.
机译:白色念珠菌中的固醇途径是几类抗真菌药的目标。固醇途径中的中间体参与麦角固醇合成,烯丙基化和三元醇合成。这项研究检查了对HMG-CoA还原酶(Hmg1p)抑制剂洛伐他汀和14α-羊毛甾醇脱甲基酶(Erg11p)抑制剂氟康唑的反应中固醇途径的基因表达。最小抑菌浓度(MIC)研究表明,洛伐他汀与氟康唑在体外具有协同作用。半定量逆转录聚合酶链反应(RT-PCR)结果表明,在存在洛伐他汀和氟康唑的情况下,固醇途径早期的基因(例如HMG1和ERG20)不会改变表达。固醇途径的后半部分(例如ERG9和ERG11)在对数增长中期响应这些药物而表达增加。参与异戊二烯化的基因,例如RAM1和RAM2,在对数增长中期也对这些药物产生反应,尽管另一个异戊二烯化基因CDC43并未受到影响。生长24小时后,在两种药物存在下,ERG20,ERG9和ERG11的相对表达均保持不变或增加,而在所有药物处理下,所有其他基因的表达均下降。

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