Department of Food Sciences and Technology, University of Natural Resources and Applied Life Sciences, Vienna, Austria.
Biotechnol J. 2010 Aug;5(8):857-70. doi: 10.1002/biot.201000120.
In a screening of saprotrophic, ectomycorrhizal and plant pathogen ascomycetes a frequent occurrence of laccase was observed. Lamprospora wrightii, the best producing organism, was chosen to elucidate the properties of a laccase from a moss-associated, saprotrophic ascomycete. The expression of laccase by this bryophilic fungus could be increased by the addition of tomato juice or copper sulfate to the medium. The obtained volumetric activity after optimization was 420 U/mL in either shaking flask or bioreactor-based cultivations. The purified laccase has a molecular mass of 68 kDa and an isoelectric point of 3.4. Although of ascomycete origin, its catalytic properties are similar to typical basidiomycte laccases, and an excellent activity and stability was observed at low pH, which makes it suitable for bioremediation in acidic environments. As an example, the decolorization reactions of azo-, anthraquinone-, trimethylmethane- and indigoid dyes at pH 3.0 and 5.0 were investigated. All ten selected dyes were decolorized, five of them very efficiently. Depending on the dye, the decolorization was found to be a combination of two reactions, degradation of the chromophore and formation of polymerized products, which contributed to the overall process in a dye-specific pattern.
在对腐生、外生菌根和植物病原菌子囊菌的筛选中,观察到漆酶的频繁出现。选择产漆酶能力最强的 Lamprospora wrightii 来阐明一种来自与苔藓相关的腐生子囊菌的漆酶的性质。通过向培养基中添加番茄汁或硫酸铜,可以增加这种嗜苔藓真菌的漆酶表达。在优化后,无论是在摇瓶还是生物反应器培养中,获得的体积酶活都为 420 U/mL。该纯化的漆酶的分子量为 68 kDa,等电点为 3.4。尽管它起源于子囊菌,但它的催化特性类似于典型的担子菌漆酶,并且在低 pH 值下表现出出色的活性和稳定性,这使其适合在酸性环境中进行生物修复。例如,在 pH 值为 3.0 和 5.0 时研究了偶氮、蒽醌、三甲基甲烷和靛蓝染料的脱色反应。十种选定的染料均被脱色,其中五种非常有效。根据染料的不同,发现脱色是两种反应的组合,即生色团的降解和聚合产物的形成,这以染料特异性的模式对整个过程做出了贡献。