Characterization and Degradation of Triphenylmethane Dyes and Their Leuco-Derivatives by Heterologously Expressed Laccase From Coprinus cinerea

IF 2.8 3区 生物学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY
Cen Qian, Zuodi Pei, Bo Wang, Rihe Peng, Quanhong Yao
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Abstract

Laccase is a copper-containing polyphenol oxidase that can oxidize phenolic and non-phenolic organic substrates. In the past decades, laccases had received considerable attention because of the ability to degrade various organic substances. Based on the codon preference of the Pichia pastoris expression system, this study optimized the gene structure of the laccase gene Lcc1 from Coprius cinerea through synthetic biology methods. A new gene Lcc1I was synthesized and heterologously expressed in P. pastoris. After 3 days of cultivation in a shake flask at 30°C, the transformants produced at a yield of 890 mg L−1protein. The highest production level of the recombinant laccase was 2760 U L−1. The molecular mass of the recombinant laccase was estimated at 60 kDa. The enzyme showed highest activity at pH 3.4 and 45°C. It possessed better stability at higher pH and lower temperature condition. Using 2,2'-azino-bis-(3-ethylbenzothiazoline)−6-sulphonate (ABTS) as the substrate, the Km and Vmax values were 0.136 mM and 9778 μM min−1 mg−1, respectively. The recombinant laccase could directly oxidize some triphenylmethane dyes like leuco-crystal violet (LCV) and leuco-malachite green (LMG). With the help of ABTS mediator, it could oxidize and degrade 77.7% crystal violet (CV) and 79.2% malachite green (MG) within 1 h. Our results indicate that optimization of the laccase gene achieves good expression results in the host system. The dye degradation model constructed in this study may also be applied to the degradation of other organic pollutants and toxic substances, providing new solutions for environmental remediation against the increasingly severe environmental pollution.

异源表达的铜绿菌漆酶对三苯甲烷染料及其褐煤衍生物的表征和降解作用
漆酶是一种含铜的多酚氧化酶,可以氧化酚类和非酚类有机底物。在过去的几十年中,漆酶因其降解各种有机物的能力而备受关注。根据 Pichia pastoris 表达系统的密码子偏好,本研究通过合成生物学方法优化了 Coprius cinerea 的漆酶基因 Lcc1 的基因结构。合成了一个新基因 Lcc1I,并在 P. pastoris 中进行了异源表达。在 30°C 摇瓶中培养 3 天后,转化子产生了 890 mg L-1 蛋白质。重组漆酶的最高产量为 2760 U L-1。重组漆酶的分子质量估计为 60 kDa。该酶在 pH 值为 3.4 和 45°C 时活性最高。在较高的 pH 值和较低的温度条件下,它具有更好的稳定性。以 2,2'-azino-bis-(3-ethylbenzothiazoline)-6-sulphonate (ABTS) 为底物,其 Km 和 Vmax 值分别为 0.136 mM 和 9778 μM min-1 mg-1。重组漆酶能直接氧化一些三苯甲烷染料,如亮晶紫(LCV)和亮孔雀石绿(LMG)。结果表明,优化漆酶基因在宿主系统中的表达效果良好。本研究构建的染料降解模型还可应用于其他有机污染物和有毒物质的降解,为应对日益严重的环境污染提供新的环境修复方案。
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来源期刊
Cell Biochemistry and Function
Cell Biochemistry and Function 生物-生化与分子生物学
CiteScore
6.20
自引率
0.00%
发文量
93
审稿时长
6-12 weeks
期刊介绍: Cell Biochemistry and Function publishes original research articles and reviews on the mechanisms whereby molecular and biochemical processes control cellular activity with a particular emphasis on the integration of molecular and cell biology, biochemistry and physiology in the regulation of tissue function in health and disease. The primary remit of the journal is on mammalian biology both in vivo and in vitro but studies of cells in situ are especially encouraged. Observational and pathological studies will be considered providing they include a rational discussion of the possible molecular and biochemical mechanisms behind them and the immediate impact of these observations to our understanding of mammalian biology.
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