Heterologous laccase from the marine environment: Purification, characterization, and degradation of synthetic dyes

IF 3.8 Q2 BIOTECHNOLOGY & APPLIED MICROBIOLOGY Biocatalysis and agricultural biotechnology Pub Date : 2025-01-01 Epub Date: 2024-12-26 DOI:10.1016/j.bcab.2024.103485
Igor Vinicius Ramos Otero , Magdalena Haslbeck , Lara Cavalari Santello , Henrique Ferreira , Volker Sieber , Lara Durães Sette
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Abstract

The marine-derived fungus Peniophora sp. CBMAI 1063 is a hyper-producer of laccase. Laccases are multicopper oxidases able to oxidize different aromatic compounds while reducing molecular oxygen to water. Several laccases from terrestrial environments have been purified and characterized. However, little is known about marine-derived laccases. In this study, Pnh_Lac1 (Lac1) from the fungus Peniophora sp. CBMAI 1063 was heterologously expressed in Pichia pastoris, purified, characterized, and used for the degradation/detoxification of synthetic dyes. Lac1 (∼72 kDa) exhibited optimal activity at 60 °C and pH 3, with good thermostability (T501h = 56 °C) and high tolerance to metal ions and organic solvents. Lac 1 decolorized/degraded different classes of dyes, under low enzyme concentrations (0.2–0.02 U mL-1), with an excellent performance regarding the decolorization of Indigo Carmine (93% after 2 h) in the presence of syringaldehyde. Additionally, 65% of the azo dye Reactive Black 5 was degraded by the Lac1-mediator system into lower molecular weight metabolites, with a significant reduction in phytotoxicity. These results demonstrate that the marine-derived Lac1 is a fungal laccase highly active under low concentration, with the potential to mitigate environmental pollutants on biodegradation strategies based on biocatalysis.
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海洋环境中的异源漆酶:提纯、表征和合成染料的降解
海洋来源的真菌Peniophora sp. CBMAI 1063是漆酶的高产菌。漆酶是多铜氧化酶,能够氧化不同的芳香族化合物,同时将分子氧还原为水。来自陆地环境的几种漆酶已经被纯化和鉴定。然而,人们对海洋来源的漆酶知之甚少。本研究从真菌Peniophora sp. CBMAI 1063中异源表达Pnh_Lac1 (Lac1),对其进行纯化、表征,并将其用于合成染料的降解/解毒。Lac1 (~ 72 kDa)在60°C和pH 3下表现出最佳活性,具有良好的热稳定性(T501h = 56°C)和对金属离子和有机溶剂的高耐受性。Lac 1在低酶浓度(0.2-0.02 U mL-1)下对不同种类的染料进行脱色/降解,在丁香醛存在下对靛蓝胭脂红的脱色效果很好(2 h后达到93%)。此外,65%的偶氮染料活性黑5被lac1介质系统降解为低分子量代谢物,显著降低了植物毒性。这些结果表明,海洋来源的Lac1是一种在低浓度下具有高活性的真菌漆酶,具有基于生物催化的生物降解策略减轻环境污染物的潜力。
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来源期刊
Biocatalysis and agricultural biotechnology
Biocatalysis and agricultural biotechnology Agricultural and Biological Sciences-Agronomy and Crop Science
CiteScore
7.70
自引率
2.50%
发文量
308
审稿时长
48 days
期刊介绍: Biocatalysis and Agricultural Biotechnology is the official journal of the International Society of Biocatalysis and Agricultural Biotechnology (ISBAB). The journal publishes high quality articles especially in the science and technology of biocatalysis, bioprocesses, agricultural biotechnology, biomedical biotechnology, and, if appropriate, from other related areas of biotechnology. The journal will publish peer-reviewed basic and applied research papers, authoritative reviews, and feature articles. The scope of the journal encompasses the research, industrial, and commercial aspects of biotechnology, including the areas of: biocatalysis; bioprocesses; food and agriculture; genetic engineering; molecular biology; healthcare and pharmaceuticals; biofuels; genomics; nanotechnology; environment and biodiversity; and bioremediation.
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