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首页> 外文期刊>Eukaryotic cell >Contributions of Aspergillus fumigatus ATP-Binding Cassette Transporter Proteins to Drug Resistance and Virulence
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Contributions of Aspergillus fumigatus ATP-Binding Cassette Transporter Proteins to Drug Resistance and Virulence

机译:烟曲霉ATP结合盒式转运蛋白对耐药性和毒力的贡献

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In yeast cells such as those of Saccharomyces cerevisiae, expression of ATP-binding cassette (ABC) transporter proteins has been found to be increased and correlates with a concomitant elevation in azole drug resistance. In this study, we investigated the roles of two Aspergillus fumigatus proteins that share high sequence similarity with S. cerevisiae Pdr5, an ABC transporter protein that is commonly overproduced in azole-resistant isolates in this yeast. The two A. fumigatus genes encoding the ABC transporters sharing the highest sequence similarity to S. cerevisiae Pdr5 are called abcA and abcB here. We constructed deletion alleles of these two different ABC transporter-encoding genes in three different strains of A. fumigatus. Loss of abcB invariably elicited increased azole susceptibility, while abcA disruption alleles had variable phenotypes. Specific antibodies were raised to both AbcA and AbcB proteins. These antisera allowed detection of AbcB in wild-type cells, while AbcA could be visualized only when overproduced from the hspA promoter in A. fumigatus. Overproduction of AbcA also yielded increased azole resistance. Green fluorescent protein fusions were used to provide evidence that both AbcA and AbcB are localized to the plasma membrane in A. fumigatus. Promoter fusions to firefly luciferase suggested that expression of both ABC transporter-encoding genes is inducible by azole challenge. Virulence assays implicated AbcB as a possible factor required for normal pathogenesis. This work provides important new insights into the physiological roles of ABC transporters in this major fungal pathogen.
机译:在诸如酿酒酵母(Saccharomyces cerevisiae)的酵母细胞中,已发现ATP结合盒(ABC)转运蛋白的表达增加并且与伴随的唑耐药性增加相关。在这项研究中,我们调查了两种烟曲霉蛋白的作用,它们与酿酒酵母Pdr5具有高度的序列相似性,酿酒酵母Pdr5是一种ABC转运蛋白,通常在这种酵母的抗唑类菌株中过量生产。编码与酿酒酵母Pdr5具有最高序列相似性的ABC转运蛋白的两个烟曲霉基因在这里被称为 abcA abcB 。我们在三个不同的烟曲霉菌株中构建了这两个不同的ABC转运蛋白编码基因的缺失等位基因。丢失 abcB 总是引起对唑的敏感性增加,而 abcA 破坏等位基因具有可变的表型。产生针对AbcA和AbcB蛋白的特异性抗体。这些抗血清允许在野生型细胞中检测AbcB,而AbcA仅在从烟曲霉的 hspA 启动子过量产生时才能看到。 AbcA的过量生产也增加了对唑的抗性。使用绿色荧光蛋白融合物提供证据,证明AbcA和AbcB都位于烟曲霉的质膜上。萤火虫荧光素酶的启动子融合表明,两个ABC转运蛋白编码基因的表达均可通过吡咯激发来诱导。毒力测定暗示AbcB是正常发病机制所需的可能因素。这项工作提供重要的新见解,在这种主要的真菌病原体中ABC转运蛋白的生理作用。

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