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两株肠球菌来源漆酶的结构分析及生化性质研究。

Structural analysis and biochemical properties of laccase enzymes from two Pediococcus species.

机构信息

ENOLAB, Institut de Biotecnologia i Biomedicina (BioTecMed), Universitat de València, Valencia, Spain.

Departament de Bioquímica i Biologia Molecular, Universitat de València, Valencia, Spain.

出版信息

Microb Biotechnol. 2021 May;14(3):1026-1043. doi: 10.1111/1751-7915.13751. Epub 2021 Feb 26.

Abstract

Prokaryotic laccases are emergent biocatalysts. However, they have not been broadly found and characterized in bacterial organisms, especially in lactic acid bacteria. Recently, a prokaryotic laccase from the lactic acid bacterium Pediococcus acidilactici 5930, which can degrade biogenic amines, was discovered. Thus, our study aimed to shed light on laccases from lactic acid bacteria focusing on two Pediococcus laccases, P. acidilactici 5930 and Pediococcus pentosaceus 4816, which have provided valuable information on their biochemical activities on redox mediators and biogenic amines. Both laccases are able to oxidize canonical substrates as ABTS, ferrocyanide and 2,6-DMP, and non-conventional substrates as biogenic amines. With ABTS as a substrate, they prefer an acidic environment and show sigmoidal kinetic activity, and are rather thermostable. Moreover, this study has provided the first structural view of two lactic acid bacteria laccases, revealing new structural features not seen before in other well-studied laccases, but which seem characteristic for this group of bacteria. We believe that understanding the role of laccases in lactic acid bacteria will have an impact on their biotechnological applications and provide a framework for the development of engineered lactic acid bacteria with enhanced properties.

摘要

原核漆酶是新兴的生物催化剂。然而,它们在细菌生物中尚未被广泛发现和表征,特别是在乳酸菌中。最近,从乳酸乳球菌 5930 中发现了一种原核漆酶,它可以降解生物胺。因此,我们的研究旨在阐明乳酸菌中的漆酶,重点研究两种乳球菌漆酶,即 P. acidilactici 5930 和 Pediococcus pentosaceus 4816,它们为我们提供了关于它们在氧化还原介体和生物胺上的生化活性的有价值信息。两种漆酶都能够氧化典型的 ABTS、亚铁氰化物和 2,6-DMP 底物,以及非典型的生物胺底物。以 ABTS 为底物时,它们更喜欢酸性环境,并表现出“S”型动力学活性,且具有相当的热稳定性。此外,本研究提供了两种乳酸菌漆酶的第一个结构视图,揭示了以前在其他研究充分的漆酶中未见的新结构特征,但这些特征似乎是该细菌组的特征。我们相信,了解漆酶在乳酸菌中的作用将对其生物技术应用产生影响,并为开发具有增强特性的工程化乳酸菌提供框架。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/838c/8085982/84fc649de205/MBT2-14-1026-g007.jpg

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