Ravalason Holy, Herpoël-Gimbert Isabelle, Record Eric, Bertaud Frédérique, Grisel Sacha, de Weert Sandra, van den Hondel Cees A M J J, Asther Marcel, Petit-Conil Michel, Sigoillot Jean-Claude
INRA, UMR1163, Biotechnologie des Champignons Filamenteux, Case 932, 163 avenue de Luminy, F-13000 Marseille, France.
J Biotechnol. 2009 Jul 15;142(3-4):220-6. doi: 10.1016/j.jbiotec.2009.04.013. Epub 2009 May 4.
Pycnoporus cinnabarinus laccase was fused to the C-terminal linker and carbohydrate binding module (CBM) of Aspergillus niger cellobiohydrolase B (CBHB). The chimeric enzyme of molecular mass 100 kDa was successfully produced in A. niger. Laccase-CBM was further purified to determine its main biochemical properties. The Michaelis-Menten constant and pH activity profile were not modified, but the chimeric enzyme was less thermostable than either the P. cinnabarinus laccase or the recombinant laccase produced in the same strain. Laccase-CBM was able to bind to a cellulosic substrate and, to a greater extent, to softwood kraft pulp. Binding to the pulp was shown to be mainly time and temperature-dependent. Laccase-CBM was further investigated for its softwood kraft pulp biobleaching potential and compared with the P. cinnabarinus laccase. Addition of a CBM was shown to greatly improve the delignification capabilities of the laccase in the presence of 1-hydroxybenzotriazole (HBT). In addition, ClO(2) reduction using 5 U of chimeric enzyme per gram of pulp was almost double than that observed using 20 U of P. cinnabarinus laccase per gram of pulp. We demonstrated that conferring a carbohydrate binding capability to the laccase could significantly enhance its biobleaching properties.
将朱红密孔菌漆酶与黑曲霉纤维二糖水解酶B(CBHB)的C末端连接子和碳水化合物结合模块(CBM)融合。分子量为100 kDa的嵌合酶在黑曲霉中成功产生。对漆酶-CBM进一步纯化以确定其主要生化特性。米氏常数和pH活性曲线未发生改变,但嵌合酶的热稳定性低于朱红密孔菌漆酶或在同一菌株中产生的重组漆酶。漆酶-CBM能够与纤维素底物结合,并且在更大程度上能够与针叶木硫酸盐浆结合。结果表明,与浆的结合主要取决于时间和温度。进一步研究了漆酶-CBM对针叶木硫酸盐浆的生物漂白潜力,并与朱红密孔菌漆酶进行了比较。结果表明,在存在1-羟基苯并三唑(HBT)的情况下,添加CBM可大大提高漆酶的脱木质素能力。此外,每克浆使用5 U嵌合酶时的二氧化氯还原量几乎是每克浆使用20 U朱红密孔菌漆酶时观察到的还原量的两倍。我们证明,赋予漆酶碳水化合物结合能力可显著增强其生物漂白性能。