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Antagonistic Changes in Sensitivity to Antifungal Drugs by Mutations of an Important ABC Transporter Gene in a Fungal Pathogen

机译:真菌病原体中重要的ABC转运蛋白基因突变,对抗真菌药物的敏感性产生拮抗变化。

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摘要

Fungal pathogens can be lethal, especially among immunocompromised populations, such as patients with AIDS and recipients of tissue transplantation or chemotherapy. Prolonged usage of antifungal reagents can lead to drug resistance and treatment failure. Understanding mechanisms that underlie drug resistance by pathogenic microorganisms is thus vital for dealing with this emerging issue. In this study, we show that dramatic sequence changes in PDR5, an ABC (ATP-binding cassette) efflux transporter protein gene in an opportunistic fungal pathogen, caused the organism to become hypersensitive to azole, a widely used antifungal drug. Surprisingly, the same mutations conferred growth advantages to the organism on polyenes, which are also commonly used antimycotics. Our results indicate that Pdr5p might be important for ergosterol homeostasis. The observed remarkable sequence divergence in the PDR5 gene in yeast strain YJM789 may represent an interesting case of adaptive loss of gene function with significant clinical implications.
机译:真菌病原体可能具有致命性,尤其是在免疫功能低下的人群中,例如艾滋病患者以及组织移植或化学疗法的接受者。长时间使用抗真菌试剂会导致耐药性和治疗失败。因此,了解引起病原微生物耐药性的机制对于解决这个新出现的问题至关重要。在这项研究中,我们显示了机会性真菌病原体中ABC(ATP结合盒)外排转运蛋白基因PDR5的剧烈序列变化,导致该生物体对广泛使用的抗真菌药物唑变得高度敏感。出乎意料的是,相同的突变赋予生物多烯上的生长优势,多烯也是常用的抗真菌药。我们的结果表明,Pdr5p对麦角固醇的体内稳态可能很重要。酵母菌株YJM789中PDR5基因中观察到的显着序列差异可能代表了基因功能的适应性丧失的一个有趣案例,具有重要的临床意义。

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