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Engineering the Expression and Characterization of Two Novel Laccase Isoenzymes from Coprinus comatus in Pichia pastoris by Fusing an Additional Ten Amino Acids Tag at N-Terminus

机译:通过在N末端融合另外十个氨基酸标签对巴斯德毕赤酵母中两种新的漆球菌漆酶同工酶的表达和特征进行工程设计

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摘要

The detail understanding of physiological/biochemical characteristics of individual laccase isoenzymes in fungi is necessary for fundamental and application purposes, but our knowledge is still limited for most of fungi due to difficult to express laccases heterologously. In this study, two novel laccase genes, named lac3 and lac4, encoding proteins of 547 and 532-amino acids preceded by 28 and 16-residue signal peptides, respectively, were cloned from the edible basidiomycete Coprinus comatus. They showed 70% identity but much lower homology with other fungal laccases at protein level (less than 58%). Two novel laccase isoenzymes were successfully expressed in Pichia pastoris by fusing an additional 10 amino acids (Thr-Pro-Phe-Pro-Pro-Phe-Asn-Thr-Asn-Ser) tag at N-terminus, and the volumetric activities could be dramatically enhanced from undetectable level to 689 and 1465 IU/l for Lac3 and Lac4, respectively. Both laccases possessed the lowest K m and highest k cat/K m value towards syringaldazine, followed by ABTS, guaiacol and 2,6-dimethylphenol similar as the low redox potential laccases from other microorganisms. Lac3 and Lac4 showed resistant to SDS, and retained 31.86% and 43.08% activity in the presence of 100 mM SDS, respectively. Lac3 exhibited higher decolorization efficiency than Lac4 for eleven out of thirteen different dyes, which may attribute to the relatively higher catalytic efficiency of Lac3 than Lac4 (in terms of k cat/K m) towards syringaldazine and ABTS. The mild synergistic decolorization by two laccases was observed for triphenylmethane dyes but not for anthraquinone and azo dyes.
机译:对真菌中各个漆酶同工酶的生理/生化特性的详细了解对于基础和应用目的是必不可少的,但是由于很难异源表达漆酶,因此我们对大多数真菌的了解仍然有限。在这项研究中,从可食的担子菌鸡腿菇中克隆了两个新颖的漆酶基因,分别编码547和532个氨基酸的蛋白(分别为28和16个残基的信号肽),称为lac3和lac4。他们在蛋白质水平上显示出70%的同一性,但与其他真菌漆酶的同源性低得多(不到58%)。通过在N端融合额外的10个氨基酸(Thr-Pro-Phe-Pro-Pro-Pro-Phe-Asn-Thr-Asn-Ser)标签在巴斯德毕赤酵母中成功表达了两种新型漆酶同工酶。 Lac3和Lac4分别从不可检测的水平显着提高到689和1465 IU / l。两种漆酶对丁香醛嗪的最低K m和最高k cat / K m值,其次是ABTS,愈创木酚和2,6-二甲基苯酚,与其他微生物的低氧化还原电位漆酶相似。 Lac3和Lac4显示出对SDS的抗性,并在存在100 mM SDS的情况下分别保留了31.86%和43.08%的活性。对于13种不同的染料中的11种,Lac3的脱色效率均高于Lac4,这可能归因于Lac3相对于丁香香嗪和ABTS的催化效率高于Lac4(按k cat / K m计)。对于三苯甲烷染料,观察到由两种漆酶产生的温和的协同脱色,而对于蒽醌和偶氮染料则观察不到。

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