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来自241的一种黄色漆酶的特性分析

Characterization of a Yellow Laccase from 241.

作者信息

Radveikienė Ingrida, Vidžiūnaitė Regina, Meškienė Rita, Meškys Rolandas, Časaitė Vida

机构信息

Life Sciences Center, Department of Bioanalysis, Institute of Biochemistry, Vilnius University, Sauletekio Ave. 7, 10257 Vilnius, Lithuania.

Life Sciences Center, Department of Molecular Microbiology and Biotechnology, Institute of Biochemistry, Vilnius University, Sauletekio Ave. 7, 10257 Vilnius, Lithuania.

出版信息

J Fungi (Basel). 2021 Feb 17;7(2):143. doi: 10.3390/jof7020143.

Abstract

Typical laccases have four copper atoms, which form three different copper centers, of which the T1 copper is responsible for the blue color of the enzyme and gives it a characteristic absorbance around 610 nm. Several laccases have unusual spectral properties and are referred to as yellow or white laccases. Only two yellow laccases from the Ascomycota phylum have been described previously, and only one amino acid sequence of those enzymes is available. A yellow laccase Bcl1 from strain 241 has been identified, purified and characterized in this work. The enzyme appears to be a dimer with a molecular mass of 186 kDa. The gene encoding the Bcl1 protein has been cloned, and the sequence analysis shows that the yellow laccase Bcl1 is phylogenetically distinct from other known yellow laccases. In addition, a comparison of amino acid sequences, and 3D modeling shows that the Bcl1 laccase lacks a conservative tyrosine, which is responsible for absorption quenching at 610 nm in another yellow asco-laccase from . High thermostability, high salt tolerance, broad substrate specificity, and the ability to decolorize dyes without the mediators suggest that the Bcl1 laccase is a potential enzyme for various industrial applications.

摘要

典型的漆酶含有四个铜原子,它们形成三种不同的铜中心,其中T1铜赋予酶蓝色,并使其在610nm左右具有特征性吸光度。几种漆酶具有不同寻常的光谱特性,被称为黄色或白色漆酶。此前仅描述了来自子囊菌门的两种黄色漆酶,且这些酶只有一个氨基酸序列。在本研究中,已从241菌株中鉴定、纯化并表征了一种黄色漆酶Bcl1。该酶似乎是一种分子量为186 kDa的二聚体。编码Bcl1蛋白的基因已被克隆,序列分析表明黄色漆酶Bcl1在系统发育上与其他已知的黄色漆酶不同。此外,氨基酸序列比较和三维建模表明,Bcl1漆酶缺乏一个保守的酪氨酸,而在另一种来自……的黄色子囊漆酶中,该酪氨酸负责610nm处的吸收猝灭。高耐热性、高耐盐性、广泛的底物特异性以及无需介体即可使染料脱色的能力表明,Bcl1漆酶是一种适用于各种工业应用的潜在酶。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d407/7922139/f56b789ce467/jof-07-00143-g001.jpg

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