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首页> 外文期刊>FEMS Yeast Research >Metabolic gene clusters encoding the enzymes of two branches of the 3-oxoadipate pathway in the pathogenic yeast Candida albicans
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Metabolic gene clusters encoding the enzymes of two branches of the 3-oxoadipate pathway in the pathogenic yeast Candida albicans

机译:编码致病酵母念珠菌念珠菌的3-氧内易途径的两个分支酶的代谢基因簇

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摘要

The pathogenic yeast Candida albicans utilizes hydroxyderivatives of benzene via the catechol and hydroxyhydroquinone branches of the 3-oxoadipate pathway. The genetic basis and evolutionary origin of this catabolic pathway in yeasts are unknown. In this study, we identified C. albicans genes encoding the enzymes involved in the degradation of hydroxybenzenes. We found that the genes coding for core components of the 3-oxoadipate pathway are arranged into two metabolic gene clusters. Our results demonstrate that C. albicans cells cultivated in media containing hydroxybenzene substrates highly induce the transcription of these genes as well as the corresponding enzymatic activities. We also found that C. albicans cells assimilating hydroxybenzenes cope with the oxidative stress by upregulation of cellular antioxidant systems such as alternative oxidase and catalase. Moreover, we investigated the evolution of the enzymes encoded by these clusters and found that most of them share a particularly sparse phylogenetic distribution among Saccharomycotina, which is likely to have been caused by extensive gene loss. We exploited this fact to find co-evolving proteins that are suitable candidates for the missing enzymes of the pathway.
机译:致病酵母念珠菌蛋白白醛犬通过3-氧伴型途径的儿茶酚和羟基醌枝来利用苯的羟基毒性。这种酵母在酵母中这种分解代谢途径的遗传基础和进化起源是未知的。在该研究中,我们鉴定了编码参与羟基苯的降解的酶的敏感性族醛族基因。我们发现编码用于3-换氧态途径的核心组分的基因被安排成两个代谢基因簇。我们的结果表明,在含有羟基苯基质的培养基中培养的C. albicans细胞高度诱导这些基因的转录以及相应的酶活性。我们还发现,通过上调细胞抗氧化体系,例如替代氧化酶和过氧化氢酶,Albicans细胞同化羟基苯的氧化胁迫。此外,我们研究了这些簇编码的酶的演变,发现它们中的大多数在糖酵母腺炎中共享特别稀疏的系统发育分布,这可能是由广泛的基因损失引起的。我们利用了这一事实来寻找合适的蛋白质,这些蛋白质是途径缺失的酶候选者。

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