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Functional studies of aldo-keto reductases in Saccharomyces cerevisiae

机译:酿酒酵母中醛酮还原酶的功能研究

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We utilized the budding yeast Saccharomyces cerevisiae as a model to systematically explore physiological roles for yeast and mammalian aldo-keto reductases. Six open reading frames encoding putative aldo-keto reductases were identified when the yeast genome was queried against the sequence for human aldose reductase, the prototypical mammalian aldo-keto reductase. Recombinant proteins produced from five of these yeast open reading frames demonstrated NADPH-dependent reductase activity with a variety of aldehyde and ketone substrates. A triple aldo-keto reductase null mutant strain demonstrated a glucose-dependent heat shock phenotype which could be rescued by ectopic expression of human aldose reductase. Catalytically-inactive mutants of human or yeast aldo-keto reductases failed to effect a rescue of the heat shock phenotype, suggesting that the phenotype results from either an accumulation of one or more unmetabolized aldo-keto reductase substrates or a synthetic deficiency of aldo-keto reductase products generated in response to heat shock stress. These results suggest that multiple aldo-keto reductases fulfill functionally redundant roles in the stress response in yeast. (c) 2006 Elsevier B.V. All rights reserved.
机译:我们利用出芽的酵母啤酒酵母作为模型来系统地探索酵母和哺乳动物的醛基酮还原酶的生理作用。当针对人醛糖还原酶(典型的哺乳动物醛糖酮还原酶)序列查询酵母基因组时,鉴定出六个编码阅读框的假定的醛糖酮还原酶。由这些酵母中的五个开放阅读框产生的重组蛋白表现出NADPH依赖性还原酶活性,并具有多种醛和酮底物。三重醛糖酮还原酶无效突变菌株显示出葡萄糖依赖性热休克表型,可通过异位表达人醛糖还原酶来挽救。人或酵母醛酮还原酶的无催化活性的突变体未能实现热休克表型的拯救,表明该表型是由于一种或多种未代谢的醛酮还原酶底物的积累或醛酮合成缺陷引起的响应热冲击应力而产生的还原酶产物。这些结果表明多种醛基酮还原酶在酵母的应激反应中发挥功能上的冗余作用。 (c)2006 Elsevier B.V.保留所有权利。

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