Lamping Erwin, Ranchod Amrita, Nakamura Kenjirou, Tyndall Joel D A, Niimi Kyoko, Holmes Ann R, Niimi Masakazu, Cannon Richard D
Department of Oral Sciences, University of Otago, Dunedin, New Zealand.
Antimicrob Agents Chemother. 2009 Feb;53(2):354-69. doi: 10.1128/AAC.01095-08. Epub 2008 Nov 17.
Most Candida krusei strains are innately resistant to fluconazole (FLC) and can cause breakthrough candidemia in immunocompromised individuals receiving long-term prophylactic FLC treatment. Although the azole drug target, Erg11p, of C. krusei has a relatively low affinity for FLC, drug efflux pumps are also believed to be involved in its innate FLC resistance. We describe here the isolation and characterization of Abc1p, a constitutively expressed multidrug efflux pump, and investigate ERG11 and ABC1 expression in C. krusei. Examination of the ERG11 promoter revealed a conserved azole responsive element that has been shown to be necessary for the transcription factor Upc2p mediated upregulation by azoles in related yeast. Extensive cloning and sequencing identified three distinct ERG11 alleles in one of two C. krusei strains. Functional overexpression of ERG11 and ABC1 in Saccharomyces cerevisiae conferred high levels of resistance to azoles and a range of unrelated Abc1p pump substrates, while small molecule inhibitors of Abc1p chemosensitized C. krusei to azole antifungals. Our data show that despite the presence of multiple alleles of ERG11 in some, likely aneuploid, C. krusei strains, it is mainly the low affinity of Erg11p for FLC, together with the constitutive but low level of expression of the multidrug efflux pump Abc1p, that are responsible for the innate FLC resistance of C. krusei.
大多数克鲁斯念珠菌菌株对氟康唑(FLC)天然耐药,可在接受长期预防性FLC治疗的免疫功能低下个体中引起突破性念珠菌血症。尽管克鲁斯念珠菌的唑类药物靶点Erg11p对FLC的亲和力相对较低,但药物外排泵也被认为与其天然的FLC耐药性有关。我们在此描述了一种组成型表达的多药外排泵Abc1p的分离和特性,并研究了克鲁斯念珠菌中ERG11和ABC1的表达。对ERG11启动子的检查发现了一个保守的唑类反应元件,该元件已被证明是转录因子Upc2p介导的相关酵母中唑类上调所必需的。广泛的克隆和测序在两种克鲁斯念珠菌菌株之一中鉴定出三个不同的ERG11等位基因。ERG11和ABC1在酿酒酵母中的功能性过表达赋予了对唑类和一系列无关的Abc1p泵底物的高水平抗性,而Abc1p的小分子抑制剂使克鲁斯念珠菌对唑类抗真菌药产生化学敏感性。我们的数据表明,尽管在一些可能为非整倍体的克鲁斯念珠菌菌株中存在多个ERG11等位基因,但主要是Erg11p对FLC的低亲和力,以及多药外排泵Abc1p的组成型但低水平表达,导致了克鲁斯念珠菌对FLC的天然耐药性。