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来自子囊菌VKM F-3561的异常寡聚漆酶样氧化酶在中性环境条件下聚合苯丙烷类化合物和酚类化合物。

Unusual Oligomeric Laccase-like Oxidases from Ascomycete VKM F-3561 Polymerizing Phenylpropanoids and Phenolic Compounds under Neutral Environmental Conditions.

作者信息

Renfeld Zhanna V, Chernykh Alexey M, Baskunov Boris P, Gaidina Anastasya S, Myasoedova Nina M, Egorova Anna D, Moiseeva Olga V, Gorina Sophya Yu, Kolomytseva Marina P

机构信息

G.K. Skryabin Institute of Biochemistry and Physiology of Microorganisms, Federal Research Center "Pushchino Scientific Center for Biological Research of the Russian Academy of Sciences", Prosp. Nauki 5, 142290 Pushchino, Russia.

出版信息

Microorganisms. 2023 Nov 3;11(11):2698. doi: 10.3390/microorganisms11112698.

Abstract

The unique oligomeric alkaliphilic laccase-like oxidases of the ascomycete VKM F-3561 (with molecular masses about 1035 and 870 kDa) were purified and characterized for the first time. The ability of the enzymes to oxidize phenylpropanoids and phenolic compounds under neutral environmental conditions with the formation of previously unknown di-, tri-, and tetrameric products of transformation was shown. The possibility to obtain industrially valuable compounds (dihydroxybenzyl alcohol and hydroxytyrosol) from caffeic acid using laccase-like oxidases of VKM F-3561 has been shown. Complete nucleotide sequence of the laccase gene, which is expressed at the peak of alkaliphilic laccase activity of the fungus, and its promoter region were determined. Based on the phylogenetic analysis of the nucleotide sequence, the nearest relationship of the isolated laccase gene with similar genes of fungi of the genera , , and was shown. Homologous model of the laccase structure was predicted and a proton channel was found, which was presumably responsible for the accumulation and transport of protons to T2/T3-copper center in the alkaliphilic laccase molecule and providing the functional activity of the enzyme in the neutral alkaline environment conditions.

摘要

首次对子囊菌VKM F-3561独特的寡聚嗜碱漆酶样氧化酶(分子量约为1035和870 kDa)进行了纯化和表征。研究表明,这些酶能够在中性环境条件下氧化苯丙烷类化合物和酚类化合物,并形成前所未知的二聚、三聚和四聚转化产物。已证明利用VKM F-3561的漆酶样氧化酶从咖啡酸中获得具有工业价值的化合物(二羟基苄醇和羟基酪醇)的可能性。测定了在该真菌嗜碱漆酶活性峰值时表达的漆酶基因的完整核苷酸序列及其启动子区域。基于核苷酸序列的系统发育分析,显示了分离的漆酶基因与曲霉属、青霉属和毛霉属真菌的相似基因之间的最近亲缘关系。预测了漆酶结构的同源模型,并发现了一个质子通道,该通道可能负责在嗜碱漆酶分子中将质子积累和转运到T2/T3铜中心,并在中性碱性环境条件下提供酶的功能活性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b9c3/10673308/bc3be7316183/microorganisms-11-02698-g008.jpg

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