Li Jian-feng, Hong Yu-zhi, Xiao Ya-zhong
School of Life Sciences & Modern Experiment Technology Center, Anhui University, Hefei 230039, China.
Wei Sheng Wu Xue Bao. 2007 Feb;47(1):54-8.
A new laccase gene (lacC) was cloned from the genomic DNA isolated from Trametes sp. 420, a new laccase-producing fungus, using the degenerate primers based on the conserved copper-binding regions in fungal laccases. Long distance-inverse PCR (LD-IPCR) was used to amplify the flanking sequences of the gene. The lacC DNA sequence obtained was 3640 base pairs (bp), including the entire open reading frame (2263bp) and the 5'-and 3'-noncoding regions. The lacC cDNA sequence is 1560bp, encoding a 519 amino acid protein. The deduced peptide sequence of LacC contains ten putative N-glycosylation sites and four conserved copper-binding regions. The lacC cDNA without its signal sequence was cloned into the expression vector pPIC9K through the pPIC9 plasmid and transformed into the Pichia pastoris strain GS115.The positive transformant was cultured at 20 degrees C in BMM medium containing 0.3mmol/L CuSO4 and 0.8% alanine, with the yield of the recombinant laccase rLacC being 1.62 x 10(4) U/L after a 9-day cell growth. Furthermore, the crude enzyme was used to decolorize several synthetic dyes at a final concentration of 50mg/L. The results showed that rLacC (6U/L) possessed the valuable ability to decolorize dyes of triarylmethane and azo types tested. The presence of low molecular weight redox mediators of ABTS and HBT increased the efficiency and velocity of dye decolorization significantly.
从新的产漆酶真菌栓菌属Trametes sp. 420分离的基因组DNA中,使用基于真菌漆酶保守铜结合区域的简并引物克隆了一个新的漆酶基因(lacC)。采用长距离反向PCR(LD-IPCR)扩增该基因的侧翼序列。获得的lacC DNA序列为3640个碱基对(bp),包括完整的开放阅读框(2263bp)以及5'和3'非编码区。lacC cDNA序列为1560bp,编码一个含519个氨基酸的蛋白质。推导的LacC肽序列包含10个假定的N-糖基化位点和4个保守的铜结合区域。不含信号序列的lacC cDNA通过pPIC9质粒克隆到表达载体pPIC9K中,并转化到毕赤酵母菌株GS115中。阳性转化体在含有0.3mmol/L CuSO4和0.8%丙氨酸的BMM培养基中于20℃培养,细胞生长9天后重组漆酶rLacC的产量为1.62×10(4) U/L。此外,粗酶用于对几种终浓度为50mg/L的合成染料进行脱色。结果表明,rLacC(6U/L)具有对所测试的三芳基甲烷和偶氮类染料进行脱色的宝贵能力。低分子量氧化还原介质ABTS和HBT的存在显著提高了染料脱色的效率和速度。