首页> 美国卫生研究院文献>Frontiers in Genetics >The Paralogous Genes PDR18 and SNQ2 Encoding Multidrug Resistance ABC Transporters Derive From a Recent Duplication Event PDR18 Being Specific to the Saccharomyces Genus
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The Paralogous Genes PDR18 and SNQ2 Encoding Multidrug Resistance ABC Transporters Derive From a Recent Duplication Event PDR18 Being Specific to the Saccharomyces Genus

机译:旁系基因PDR18和SNQ2编码多药抗性ABC转运蛋白来自最近的复制事件PDR18对酿酒酵母属特有

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摘要

Pleiotropic drug resistance (PDR) family of ATP-binding cassette (ABC) transporters play a key role in the simultaneous acquisition of resistance to a wide range of structurally and functionally unrelated cytotoxic compounds in yeasts. Saccharomyces cerevisiae Pdr18 was proposed to transport ergosterol at the plasma membrane, contributing to the maintenance of adequate ergosterol content and decreased levels of stress-induced membrane disorganization and permeabilization under multistress challenge leading to resistance to ethanol, acetic acid and the herbicide 2,4-D, among other compounds. PDR18 is a paralog of SNQ2, first described as a determinant of resistance to the chemical mutagen 4-NQO. The phylogenetic and neighborhood analysis performed in this work to reconstruct the evolutionary history of ScPDR18 gene in Saccharomycetaceae yeasts was focused on the 214 Pdr18/Snq2 homologs from the genomes of 117 strains belonging to 29 yeast species across that family. Results support the idea that a single duplication event occurring in the common ancestor of the Saccharomyces genus yeasts was at the origin of PDR18 and SNQ2, and that by chromosome translocation PDR18 gained a subtelomeric region location in chromosome XIV. The multidrug/multixenobiotic phenotypic profiles of S. cerevisiae pdr18Δ and snq2Δ deletion mutants were compared, as well as the susceptibility profile for Candida glabrata snq2Δ deletion mutant, given that this yeast species has diverged previously to the duplication event on the origin of PDR18 and SNQ2 genes and encode only one Pdr18/Snq2 homolog. Results show a significant overlap between ScSnq2 and CgSnq2 roles in multidrug/multixenobiotic resistance (MDR/MXR) as well as some overlap in azole resistance between ScPdr18 and CgSnq2. The fact that ScSnq2 and ScPdr18 confer resistance to different sets of chemical compounds with little overlapping is consistent with the subfunctionalization and neofunctionalization of these gene copies. The elucidation of the real biological role of ScSNQ2 will enlighten this issue. Remarkably, PDR18 is only found in Saccharomyces genus genomes and is present in almost all the recently available 1,000 deep coverage genomes of natural S. cerevisiae isolates, consistent with the relevant encoded physiological function.
机译:ATP结合盒(ABC)转运蛋白的多向耐药性(PDR)家族在同时获得对酵母中多种结构上和功能上不相关的细胞毒性化合物的耐药性中起关键作用。拟酿酒酵母Pdr18可以在质膜上转运麦角固醇,有助于维持适当的麦角固醇含量,并在多应力挑战下降低应力诱导的膜分解和通透性水平,从而导致对乙醇,乙酸和除草剂2,4-的抗性D,以及其他化合物。 PDR18是SNQ2的旁系同源物,首先被描述为对化学诱变剂4-NQO的抗性决定因素。为了重建Saccharomycetaceae酵母中ScPDR18基因的进化历史,在这项工作中进行的系统进化和邻域分析集中于来自该家族29个酵母物种的117个菌株的基因组中的214个Pdr18 / Snq2同源物。结果支持这样的想法,即在酵母属酵母的共同祖先中发生的单个复制事件是PDR18和SNQ2的起源,而通过染色体易位PDR18在XIV染色体中获得了一个亚端粒区域。比较了酿酒酵母pdr18Δ和snq2Δ缺失突变体的多药/多异生素表型概况,以及光滑念珠菌snq2Δ缺失突变体的易感性,因为该酵母菌种以前在PDR18和SNQ2的起源上已发生复制事件基因,并且仅编码一个Pdr18 / Snq2同源物。结果显示,ScSnq2和CgSnq2在多药/多异物抗药性(MDR / MXR)中的作用之间存在显着的重叠,并且在ScPdr18和CgSnq2之间对唑的抗性也存在一些重叠。 ScSnq2和ScPdr18赋予对不同化合物的耐药性且几乎没有重叠的事实与这些基因拷贝的亚功能化和新功能化相一致。对ScSNQ2真正生物学作用的阐明将启发这个问题。值得注意的是,PDR18仅在酿酒酵母属的基因组中发现,并且几乎存在于最近所有可用的天然 S的1,000个深度覆盖基因组中。啤酒酵母分离株,与相关的编码生理功能一致。

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