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具有漆酶-铁氧化酶活性的多铜氧化酶:来自某一成员中铁氧化酶活性决定因素的分类与研究 。

Multicopper oxidases with laccase-ferroxidase activity: Classification and study of ferroxidase activity determinants in a member from .

作者信息

Aza Pablo, Molpeceres Gonzalo, Vind Jesper, Camarero Susana

机构信息

Centro de Investigaciones Biológicas Margarita Salas, CSIC, Ramiro de Maeztu 9, 28040 Madrid, Spain.

Novozymes A/S, Biologiens Vej 2, 2800 Kongens Lyngby, Denmark.

出版信息

Comput Struct Biotechnol J. 2023 Jan 23;21:1041-1053. doi: 10.1016/j.csbj.2023.01.030. eCollection 2023.

Abstract

Multi-copper oxidases (MCO) share a common molecular architecture and the use of copper ions as cofactors to reduce O to HO, but show high sequence heterogeneity and functional diversity. Many new emerging MCO genes are wrongly annotated as laccases, the largest group of MCOs, with the widest range of biotechnological applications (particularly those from basidiomycete fungi) due to their ability to oxidise aromatic compounds and lignin. Thus, comprehensive studies for a better classification and structure-function characterisation of MCO families are required. Laccase-ferroxidases (LAC-FOXs) constitute a separate and unexplored group of MCOs with proposed dual features between laccases and ferroxidases. We aim to better define this cluster and the structural determinants underlying putative hybrid activity. We performed a phylogenetic analysis of the LAC-FOXs from basidiomycete fungi, that resulted in two subgroups. This division seemed to correlate with the presence or absence of some of the three acidic residues responsible for ferroxidase activity in Fet3p from . One of these LAC-FOXs (with only one of these residues) from the fungus (HaLF) was synthesised, heterologously expressed and characterised to evaluate its catalytic activity. HaLF oxidised typical laccase substrates (phenols, aryl amines and N-heterocycles), but no Fe (II). The enzyme was subjected to site-directed mutagenesis to determine the key residues that confer ferroxidase activity. The mutated HaLF variant with full restoration of the three acidic residues exhibited efficient ferroxidase activity, while it partially retained the wide-range oxidative activity of the native enzyme associated to laccases sensu stricto.

摘要

多铜氧化酶(MCO)具有共同的分子结构,并利用铜离子作为辅因子将O还原为H₂O,但显示出高度的序列异质性和功能多样性。许多新出现的MCO基因被错误注释为漆酶,漆酶是MCO中最大的一组,具有最广泛的生物技术应用(特别是来自担子菌真菌的那些),因为它们能够氧化芳香化合物和木质素。因此,需要进行全面研究以更好地对MCO家族进行分类和结构-功能表征。漆酶-铁氧化酶(LAC-FOXs)构成了一个单独的、未被探索的MCO组,具有介于漆酶和铁氧化酶之间的双重特征。我们旨在更好地定义这个簇以及潜在杂交活性背后的结构决定因素。我们对担子菌真菌的LAC-FOXs进行了系统发育分析,结果产生了两个亚组。这种划分似乎与酿酒酵母Fet3p中负责铁氧化酶活性的三个酸性残基中某些残基的存在与否相关。合成了来自真菌(HaLF)的其中一种LAC-FOXs(仅具有这些残基中的一个),进行了异源表达和表征以评估其催化活性。HaLF氧化典型的漆酶底物(酚类、芳基胺和N-杂环),但不氧化Fe(II)。对该酶进行定点诱变以确定赋予铁氧化酶活性的关键残基。具有三个酸性残基完全恢复的突变HaLF变体表现出高效的铁氧化酶活性,同时它部分保留了与严格意义上的漆酶相关的天然酶的广泛氧化活性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f6e0/9880977/6127d27e6a26/ga1.jpg

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