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来自……的两种新型漆酶的纯化与表征

Purification and Characterization of Two Novel Laccases from .

作者信息

Glazunova Olga A, Moiseenko Konstantin V, Savinova Olga S, Fedorova Tatyana V

机构信息

A.N. Bach Institute of Biochemistry, Research Center of Biotechnology of the Russian Academy of Sciences, 119071 Moscow, Russia.

出版信息

J Fungi (Basel). 2020 Dec 6;6(4):340. doi: 10.3390/jof6040340.

Abstract

Although, currently, more than 100 laccases have been purified from basidiomycete fungi, the majority of these laccases were obtained from fungi of the Polyporales order, and only scarce data are available about the laccases from other fungi. In this article, laccase production by the white-rot basidiomycete fungus , belonging to the Russulales order, was investigated. It was shown that, under copper induction, this fungus secreted three different laccase isozymes. Two laccase isozymes-Lac5 and LacA-were purified and their corresponding nucleotide sequences were determined. Both purified laccases were relatively thermostable with periods of half-life at 70 °C of 10 and 8 min for Lac5 and LacA, respectively. The laccases demonstrated the highest activity toward ABTS (97 U·mg for Lac5 and 121 U·mg for LacA at pH 4.5); Lac5 demonstrated the lowest activity toward 2,6-DMP (2.5 U·mg at pH 4.5), while LacA demonstrated this towards gallic acid (1.4 U·mg at pH 4.5). Both Lac5 and LacA were able to efficiently decolorize such dyes as RBBR and Bromcresol Green. Additionally, phylogenetic relationships among laccases of spp. were reconstructed, and groups of orthologous genes were determined. Based on these groups, all currently available data about laccases of spp. were systematized.

摘要

尽管目前已从担子菌中纯化出100多种漆酶,但这些漆酶大多来自多孔菌目真菌,关于其他真菌漆酶的可用数据却很少。在本文中,对属于红菇目的白腐担子菌真菌的漆酶生产进行了研究。结果表明,在铜诱导下,该真菌分泌三种不同的漆酶同工酶。纯化了两种漆酶同工酶——Lac5和LacA,并测定了它们相应的核苷酸序列。两种纯化的漆酶都具有较高的热稳定性,Lacac5和LacA在70°C下的半衰期分别为10分钟和8分钟。这些漆酶对ABTS表现出最高活性(在pH 4.5时,Lac5为97 U·mg,LacA为121 U·mg);Lac5对2,6 - DMP表现出最低活性(在pH 4.5时为2.5 U·mg),而LacA对没食子酸表现出最低活性(在pH 4.5时为1.4 U·mg)。Lac5和LacA都能够有效地使RBBR和溴甲酚绿等染料脱色。此外,还重建了该菌漆酶之间的系统发育关系,并确定了直系同源基因组。基于这些组,对目前所有关于该菌漆酶的可用数据进行了系统化整理。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9080/7762197/1aac44dd5b69/jof-06-00340-g001.jpg

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