Aminova L R, Kyslíková E, Volfová O, Trotsenko Y A
Institute of Biochemistry and Physiology of Microorganisms, Academy of Sciences, Moscow region, USSR.
Folia Microbiol (Praha). 1991;36(2):158-63. doi: 10.1007/BF02814496.
Three recently isolated catalase-negative mutants of Hansenula polymorpha lost the ability to grow on methanol but grew in media containing glucose, ethanol or glycerol. Their incubation in a medium with methanol resulted in an accumulation of hydrogen peroxide and cell death. During growth of a catalase-negative mutant in chemostat on a mixture of methanol and glucose, neither H2O2 accumulation nor cell death were observed up to the molar ratio of 10:1 of the two substrates. Cytochrome-c peroxidase and NADH-peroxidase activities were detected in the cells. In methylotrophic yeasts, catalase seems to be an enzyme characteristic of the metabolism of methanol but not needed for the metabolism of multicarbon substrates. The hydrogen peroxide produced during growth of the mutants on mixed substrates is detoxified by cytochrome-c peroxidase and other peroxidases.
最近分离出的三株多形汉逊酵母过氧化氢酶阴性突变体失去了在甲醇上生长的能力,但能在含有葡萄糖、乙醇或甘油的培养基中生长。将它们在含有甲醇的培养基中培养会导致过氧化氢积累和细胞死亡。在恒化器中,在甲醇和葡萄糖混合物上培养过氧化氢酶阴性突变体时,在两种底物的摩尔比达到10:1之前,未观察到过氧化氢积累和细胞死亡。在细胞中检测到了细胞色素c过氧化物酶和NADH过氧化物酶活性。在甲基营养型酵母中,过氧化氢酶似乎是甲醇代谢的一种特征性酶,但不是多碳底物代谢所必需的。突变体在混合底物上生长过程中产生的过氧化氢可被细胞色素c过氧化物酶和其他过氧化物酶解毒。