Ha H C, Honda Y, Watanabe T, Kuwahara M
Wood Research Institute, Kyoto University, Uji, Japan.
Appl Microbiol Biotechnol. 2001 Jun;55(6):704-11. doi: 10.1007/s002530100653.
Pleurotus ostreatus No. 42 produced the ligninolytic enzymes, manganese peroxidase (MnP) and laccase, in agitation culture in glucose/peptone/wheat-bran medium. Formation of mycelial pellets 1-2 mm in diameter was essential for the production of MnP; and the concentration of dissolved oxygen in the culture medium greatly influenced the production of MnP, a concentration over 5 ppm being necessary for MnP production. The maximal activity of MnP was obtained on days 7-9 of culture, after the consumption of nutrient glucose. Introduction of oxygen from the start of the cultivation caused large pellet formation, which resulted in a low MnP activity level. P. ostreatus No. 42 produced two MnP isozymes in agitation culture. The major isozyme, F-2, was 36.4 kDa and had a pI of 3.95. The MnP characteristics, Km values, dependence on Mn2+ and optimum pH showed the similarity between this isozyme and MnP 3, which was produced under different culture conditions. Analysis of the N-terminal amino acid sequence indicated the close similarity of F-2 to MnP 3.
平菇42号在葡萄糖/蛋白胨/麦麸培养基的振荡培养中产生木质素降解酶——锰过氧化物酶(MnP)和漆酶。直径1-2毫米的菌丝球的形成对于MnP的产生至关重要;培养基中溶解氧的浓度极大地影响MnP的产生,MnP产生需要溶解氧浓度超过5 ppm。在营养葡萄糖消耗后,培养7-9天获得MnP的最大活性。从培养开始引入氧气会导致形成大的菌球,这导致MnP活性水平较低。平菇42号在振荡培养中产生两种MnP同工酶。主要同工酶F-2的分子量为36.4 kDa,pI为3.95。该同工酶与在不同培养条件下产生的MnP 3在MnP特性、Km值、对Mn2+的依赖性和最适pH方面表现出相似性。N端氨基酸序列分析表明F-2与MnP 3非常相似。