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Yeast flavin-containing monooxygenase is induced by the unfolded protein response

机译:展开的蛋白质反应诱导含有酵母黄素的单加氧酶

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Flavin-containing monooxygenase from yeast (yFMO) carries out the O_2- and NADPH-dependent oxidation of biological thiols, including oxidizing glutathione to glutathione disulfide. FMO pro- vides a large fraction of the oxidizing necessary for proper folding of disulfide bond-containing proteins; deletion of the enzyme reduces proper folding of endogenous carboxypeptidase Y by about 40/100. The enzyme is not essential to cell viability because other enzymes can generate a significant fraction of the oxidizing equivalents required by the cell. However, yFMO is vital to the yeast response to reductive stress. FMO1 deletion mutants grow poorly under reductive stress, and carboxypeptidase Y activity is less than 10% of that in a stressed wild type. The FMO1 gene appears to be under control of an unfolded protein response element and is inducible by factors, such as reductive stress, that elicit the unfolded protein response. Reductive stress can increase yFMO activity at least 6-fold. This increased activity allows the cell to process endogenous disulfide bond-containing proteins and also to allow correct folding of disulfide-bonded proteins ex- pressed from multicopy plasmids. The unfolded protein response is mediated by the Hac1p transcription factor that mediates virtually all of the induction of yFMO triggered by exogenous reducing agents.
机译:酵母中含有黄素的单加氧酶(yFMO)进行O_2和NADPH依赖性的生物硫醇氧化,包括将谷胱甘肽氧化为谷胱甘肽二硫化物。 FMO为适当折叠含二硫键的蛋白质提供了很大一部分氧化作用。酶的缺失使内源性羧肽酶Y的适当折叠减少了约40/100。该酶对于细胞生存力不是必需的,因为其他酶可以产生细胞所需的大部分氧化当量。但是,yFMO对于酵母对还原应激的反应至关重要。 FMO1缺失突变体在还原胁迫下生长较差,并且羧肽酶Y活性低于受胁迫的野生型中的10%。 FMO1基因似乎处于未折叠的蛋白质应答元件的控制之下,并且可以通过引发未折叠的蛋白质应答的因素(例如还原性应激)诱导。减轻压力可以使yFMO活性增加至少6倍。这种增加的活性使细胞能够处理内源性的含二硫键的蛋白质,并允许正确折叠从多拷贝质粒表达的二硫键的蛋白质。展开的蛋白质反应是由Hac1p转录因子介导的,该因子实际上介导了外源还原剂触发的yFMO诱导。

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