Laboratory of Structure Biology, School of Life Sciences, University of Science and Technology of China, Hefei, Anhui, 230026, P.R. of China.
Mycologia. 2004 Jan-Feb;96(1):26-35.
The white-rot fungus Trametes sp. AH28-2 can synthesize extracellular laccase by induction in cellobiose-based liquid culture medium. Both yields and composition of laccase isozymes, produced by Trametes sp. AH28-2, would be quite different with induction by different small-molecule aromatic compounds, o-toluidine, guaiacol and 3,5-dihydroxytoluene, which affected microbial growth and the synthesis of laccase isozymes differentially. Higher concentrations of the three inducers could considerably increase laccase isozymes yields but not change the laccase composition. Coculturing of Trametes sp. AH28-2 with either Aspergillus oryzae or Gloeophyllum trabeum showed a few effects on laccase production. Laccase isozyme, laccase B, was selectively induced by 3,5-dihydroxytoluene and purified to homogeneity by two-step chromatography. Purified laccase B appeared as blue, with a broad peak at about 600 nm and a shoulder peak at about 330 nm. The ratio of absorbance at 280 nm to that at 600 nm was 21. Every molecule of laccase B had approximately four copper atoms. Molecular mass of laccase B was estimated to be 74 kDa on SDS-PAGE, 72 kDa by FPLC and was determined to be 71 454 Da by mass spectrum. After being treated with N-glycosidase F, laccase B lost 25% of its molecular mass. The isoelectric point of laccase B was 4.0. Its optimal pH and temperature for oxidizing guaiacol were respectively 4.7 and 45 C. The half-life of the enzyme at 60 C was 14.0 min. The enzyme showed a good stability in a range of pH value of 3.5-7.5. The K(m) values of the enzyme toward substrates syringaldazine, guaiacol, ABTS, and DMOP were respectively 28.0, 1249.0, 177.0 and 109.8 μM. The corresponding V(max) are 504.0, 1910.0, 117.4 and 159.0 μM min(-1) mg(-1). In addition, activity of laccase B was inhibited strongly by sodium azide and cyanide, mildly by SDS and trifluoroacetic acid, but only weakly by dimethyl sulfoxide.
白腐菌 Trametes sp. AH28-2 可以在纤维二糖基液体培养基中通过诱导合成细胞外漆酶。Trametes sp. AH28-2 产生的漆酶同工酶的产量和组成会因不同的小分子芳香化合物、邻甲苯胺、愈创木酚和 3,5-二羟基甲苯的诱导而有很大的不同,这些化合物会对微生物的生长和漆酶同工酶的合成产生不同的影响。三种诱导剂浓度越高,漆酶同工酶的产量就会显著增加,但漆酶的组成不会改变。Trametes sp. AH28-2 与米曲霉或块菌共培养对漆酶的产生几乎没有影响。漆酶同工酶 B 被 3,5-二羟基甲苯选择性诱导,并通过两步色谱法纯化至均一性。纯化的漆酶 B 呈蓝色,在约 600nm 处有一个宽峰,在约 330nm 处有一个肩峰。280nm 处的吸光度与 600nm 处的吸光度之比为 21。每个漆酶 B 分子大约有四个铜原子。SDS-PAGE 上漆酶 B 的分子量估计为 74kDa,FPLC 上为 72kDa,质谱法测定为 71454Da。经 N-糖苷酶 F 处理后,漆酶 B 的分子量损失了 25%。漆酶 B 的等电点为 4.0。其氧化愈创木酚的最适 pH 值和温度分别为 4.7 和 45°C。酶在 60°C 下的半衰期为 14.0 分钟。该酶在 pH 值为 3.5-7.5 的范围内具有良好的稳定性。该酶对底物桑色素、愈创木酚、ABTS 和 DMOP 的 K(m) 值分别为 28.0、1249.0、177.0 和 109.8μM。相应的 V(max)分别为 504.0、1910.0、117.4 和 159.0μM min(-1) mg(-1)。此外,漆酶 B 的活性被叠氮化钠和氰化物强烈抑制,被 SDS 和三氟乙酸轻度抑制,而被二甲基亚砜仅微弱抑制。