首页> 外文期刊>International Journal of Biological Macromolecules: Structure, Function and Interactions >Physical and enzymatic properties of a new manganese peroxidase from the white-rot fungus Trametes pubescens strain i8 for lignin biodegradation and textile-dyes biodecolorization
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Physical and enzymatic properties of a new manganese peroxidase from the white-rot fungus Trametes pubescens strain i8 for lignin biodegradation and textile-dyes biodecolorization

机译:来自白腐真菌的新锰过氧化物酶的物理和酶学性质对木质素生物降解和纺织染料生物焦化的诱饵菌株I8

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A new manganese peroxidase-producing white-rot basidiomycete fungus was isolated from symptomatic wood of the camphor trees Cinnamomum camphora (L.) at the Hamma Botanical Garden (Algeria) and identified as Trametes pubescens strain i8. The enzyme was purified (MnP TP55) to apparent electrophoretic homogeneity and biochemically characterized. The specific activity and Reinheitzahl value of the purified enzyme were 221 U/mg and 2.25, respectively. MALDI-TOF/MS analysis revealed that the purified enzyme was a monomer with a molecular mass of 55.2 kDa. The NH2-terminal sequence of the first 26 amino acid residues of MnP TP55 showed high similarity with those of white-rot fungal peroxidases. It revealed optimal activity at pH 5 and 40 degrees C. This peroxidase was completely inhibited by sodium azide and potassium cyanide, suggesting the presence of heme-components in its tertiary structure. Interestingly, MnP TP55 showed higher catalytic efficiency, organic solvent-tolerance, dye-decolorization ability, and detergent-compatibility than that of horseradish peroxidase (HRP) from roots of Armoracia rustanica, manganese peroxidase from Bjerkandera adusta strain CX-9 (MnP BA30), and manganese peroxidase from Phanerochaete duysosporium (MnP PC). Overall, the findings provide strong support for the potential candidacy of MnP TP55 for environmental applications, mainly the development of enzyme-based technologies for lignin biodegradation, textile-dyes biodecolorization, and detergent formulations. (C) 2018 Elsevier B.V. All rights reserved.
机译:从樟脑树木(Algeria)的樟树植物樟树(Algeria)的樟脑树木的症状木材中分离出一种新的过氧化物酶的白腐酶的白腐酶的白腐酶的白腐酶的真菌被分离为Trametes pubescens菌株I8。将酶被纯化(MNP TP55)至表观电泳均匀性和生物化学表征。纯化酶的比活性和Reinheitzahl值分别为221u / mg和2.25。 MALDI-TOF / MS分析显示,纯化的酶是分子量为55.2kDa的单体。 MNP TP55的前26个氨基酸残基的NH 2末端序列与白腐真菌过氧化物酶的相似性高。它揭示了pH5和40℃的最佳活性。该过氧化物酶被叠氮化钠和氰化钾完全抑制,表明在其三级结构中存在血红素组分。有趣的是,MNP TP55从Bjerkandera Adusta菌株CX-9(MNP BA30)(MNP BA30)(MNP BA30)(MNP BA30)(MNP BA30)(MNP BA30)(MNP BA30)显示出高于甲状腺素过氧化物酶(HRP)的催化效率,有机溶剂耐受性,染料脱色能力和去污剂的兼容性和来自Phanerochaete Duysosporium(MNP PC)的锰过氧化物酶。总体而言,该研究结果为环境应用的MNP TP55潜在候选性提供了强有力的支持,主要是对木质素生物降解的基于酶的技术的发展,纺织染料生物植物和洗涤剂配方。 (c)2018年elestvier b.v.保留所有权利。

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