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Alcohol dehydrogenases that catalyse methyl formate synthesis participate in formaldehyde detoxification in the methylotrophic yeast Candida boidinii

机译:催化甲酸甲酯合成的酒精脱氢酶参与甲基营养型酵母假丝酵母念珠菌中的甲醛解毒

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Methyl formate synthesis during growth on methanol by methylotrophic yeasts has been considered to play a role in formaldehyde detoxification. An enzyme that catalyses methyl formate synthesis was purified from methylotrophic yeasts, and was suggested to belong to a family of alcohol dehydrogenases (ADHs). In this study we report the gene cloning and gene disruption analysis of three ADH-encoding genes in the methylotrophic yeast Candida boidinii (CbADH1, CbADH2 and CbADH3) in order to clarify the physiological role of methyl formate synthesis. From the primary structures of these three genes, CbAdh1 was shown to be cytosolic and CbAdh2 and CbAdh3 were mitochondrial enzymes. Gene products of CbADH1, CbADH2 and CbADH3 expressed in Escherichia coli showed both ADH- and methyl formate-synthesizing activities. The results of gene-disruption analyses suggested that methyl formate synthesis was mainly catalysed by a cytosolic ADH (CbAdh1), and this enzyme contributed to formaldehyde detoxitication through glutathione-independent formaldehyde oxidation during growth on methanol by methylotrophic yeasts. The GenBank/EMBL/DDBJ Accession Nos for CbADH1, CbADH2 and CbADH3 are AB125900, AB125901 and AB125902, respectively.
机译:甲基营养型酵母在甲醇上生长期间合成甲酸甲酯被认为在甲醛解毒中起作用。从甲基营养酵母中纯化出一种催化甲酸甲酯合成的酶,并被认为属于酒精脱氢酶(ADHs)家族。在这项研究中,我们报告了甲基营养型酵母假丝酵母念珠菌(CbADH1,CbADH2和CbADH3)中三个ADH编码基因的基因克隆和基因破坏分析,以阐明甲酸甲酯合成的生理作用。从这三个基因的一级结构来看,CbAdh1被证明是胞质的,CbAdh2和CbAdh3是线粒体的酶。在大肠杆菌中表达的CbADH1,CbADH2和CbADH3的基因产物显示了ADH和甲酸甲酯的合成活性。基因破坏分析的结果表明,甲酸甲酯的合成主要由胞质ADH(CbAdh1)催化,该酶通过甲基营养型酵母在甲醇上生长期间,通过谷胱甘肽不依赖的甲醛氧化来促进甲醛解毒。 CbADH1,CbADH2和CbADH3的GenBank / EMBL / DDBJ登录号分别为AB125900,AB125901和AB125902。

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