Chemical Engineering Department, Universidad de los Andes, Bogotá, Colombia.
PLoS One. 2013 Sep 3;8(9):e73721. doi: 10.1371/journal.pone.0073721. eCollection 2013.
Laccases are copper-containing enzymes involved in the degradation of lignocellulosic materials and used in the treatment of phenol-containing wastewater. In this study we investigated the effect of culture conditions, i.e. submerged or semi-solid, and copper supplementation on laccase production by Trametespubescens grown on coffee husk, soybean pod husk, or cedar sawdust. The highest specific laccase activity was achieved when the culture was conducted under submerged conditions supplemented with copper (5 mM), and using coffee husk as substrate. The crude extracts presented two laccase isoforms with molecular mass of 120 (Lac1) and 60 kDa (Lac2). Regardless of the substrate, enzymatic crude extract and purified fractions behaved similarly at different temperatures and pHs, most of them presented the maximum activity at 55 °C and a pH range between 2 and 3. In addition, they showed similar stability and electro-chemical properties. At optimal culture conditions laccase activity was 7.69 ± 0.28 U mg(-1) of protein for the crude extract, and 0.08 ± 0.001 and 2.86 ± 0.05 U mg(-1) of protein for Lac1 and Lac2, respectively. In summary, these results show the potential of coffee husk as an important and economical growth medium to produce laccase, offering a new alternative use for this common agro-industrial byproduct.
漆酶是一种含铜酶,参与木质纤维素材料的降解,并用于处理含酚废水。本研究调查了培养条件(即浸没或半固体)和铜补充对咖啡壳、大豆荚壳或雪松锯末上生长的毛栓菌产漆酶的影响。在补充铜(5 mM)并使用咖啡壳作为基质的浸没条件下培养时,获得了最高的比漆酶活性。粗提取物表现出两种同工酶,分子量分别为 120 kDa(Lac1)和 60 kDa(Lac2)。无论底物如何,酶粗提取物和纯化部分在不同温度和 pH 值下的行为相似,大多数在 55°C 和 pH 值为 2 到 3 之间表现出最大活性。此外,它们表现出相似的稳定性和电化学特性。在最佳培养条件下,粗提物的漆酶活性为 7.69 ± 0.28 U mg(-1) 的蛋白质,Lac1 和 Lac2 的蛋白质活性分别为 0.08 ± 0.001 和 2.86 ± 0.05 U mg(-1) 的蛋白质。总之,这些结果表明咖啡壳作为生产漆酶的重要且经济的生长培养基的潜力,为这种常见的农业工业副产品提供了新的替代用途。