Volfová O
Folia Microbiol (Praha). 1975;20(4):307-19. doi: 10.1007/BF02878112.
Oxidation of methanol, formaldehyde and formic acid was studied in cells and cell-free extract of the yeast Candida boidinii No. 11Bh. Methanol oxidase, an enzyme oxidizing methanol to formaldehyde, was formed inducibly after the addition of methanol to yeast cells. The oxidation of methanol by cell-free extract was dependent on the presence of oxygen and independent of any addition of nicotine-amide nucleotides. Temperature optimum for the oxidation of methanol to formaldehyde was 35 degrees C, pH optimum was 8.5. The Km for methanol was 0.8mM. The cell-free extract exhibited a broad substrate specificity towards primary alcohols (C1--C6). The activity of methanol oxidase was not inhibited by 1mM KCN, EDTA or monoiodoacetic acid. The strongest inhibitory action was exerted by p-chloromercuribenzoate. Both the cells and the cell-free extract contained catalase which participated in the oxidation of methanol to formaldehyde; the enzyme was constitutively formed by the yeast. The pH optimum for the degradation of H2O2 was in the same range as the optimum for methanol oxidation, viz. at 8.5. Catalase was more resistant to high pH than methanol oxidase. The cell-free extract contained also GSH-dependent NAD-formaldehyde dehydrogenase with Km = 0.29mM and NAD-formate dehydrogenase with Km = 55mM.
在博伊丁假丝酵母11Bh号菌株的细胞及无细胞提取物中研究了甲醇、甲醛和甲酸的氧化作用。甲醇氧化酶可将甲醇氧化为甲醛,在向酵母细胞中添加甲醇后可诱导形成该酶。无细胞提取物对甲醇的氧化作用依赖于氧气的存在,且与任何烟酰胺核苷酸的添加无关。甲醇氧化为甲醛的最适温度为35℃,最适pH为8.5。甲醇的米氏常数为0.8mM。无细胞提取物对伯醇(C1 - C6)表现出广泛的底物特异性。甲醇氧化酶的活性不受1mM氰化钾、乙二胺四乙酸或碘乙酸的抑制。对氯汞苯甲酸的抑制作用最强。细胞和无细胞提取物均含有过氧化氢酶,其参与甲醇氧化为甲醛;该酶由酵母组成型形成。过氧化氢降解的最适pH与甲醇氧化的最适pH在相同范围内,即8.5。过氧化氢酶比甲醇氧化酶对高pH更具抗性。无细胞提取物还含有谷胱甘肽依赖性NAD - 甲醛脱氢酶,其米氏常数为0.29mM,以及NAD - 甲酸脱氢酶,其米氏常数为55mM。