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盐诱导海洋来源漆酶Lac15活性增强的机制

Mechanism of salt-induced activity enhancement of a marine-derived laccase, Lac15.

作者信息

Li Jie, Xie Yanan, Wang Rui, Fang Zemin, Fang Wei, Zhang Xuecheng, Xiao Yazhong

机构信息

School of Life Sciences, Anhui University, 111 Jiulong Road, Hefei, 230601, Anhui, China.

Anhui Provincial Engineering Technology Research Center of Microorganisms and Biocatalysis, 111 Jiulong Road, Hefei, 230601, Anhui, China.

出版信息

Eur Biophys J. 2018 Apr;47(3):225-236. doi: 10.1007/s00249-017-1251-5. Epub 2017 Sep 5.

Abstract

Laccase (benzenediol: oxygen oxidoreductases, EC1.10.3.2) is a multi-copper oxidase capable of oxidizing a variety of phenolic and other aromatic organic compounds. The catalytic power of laccase makes it an attractive candidate for potential applications in many areas of industry including biodegradation of organic pollutants and synthesis of novel drugs. Most laccases are vulnerable to high salt and have limited applications. However, some laccases are not only tolerant to but also activated by certain concentrations of salt and thus have great application potential. The mechanisms of salt-induced activity enhancement of laccases are unclear as yet. In this study, we used dynamic light scattering, size exclusion chromatography, analytical ultracentrifugation, intrinsic fluorescence emission, circular dichroism, ultraviolet-visible light absorption, and an enzymatic assay to investigate the potential correlation between the structure and activity of the marine-derived laccase, Lac15, whose activity is promoted by low concentrations of NaCl. The results showed that low concentrations of NaCl exert little influence on the protein structure, which was partially folded in the absence of the salt; moreover, the partially folded rather than the fully folded state seemed to be favorable for enzyme activity, and this partially folded state was distinctive from the so-called 'molten globule' occasionally observed in active enzymes. More data indicated that salt might promote laccase activity through mechanisms involving perturbation of specific local sites rather than a change in global structure. Potential binding sites for chloride ions and their roles in enzyme activity promotion are proposed.

摘要

漆酶(苯二酚:氧氧化还原酶,EC1.10.3.2)是一种多铜氧化酶,能够氧化多种酚类和其他芳香族有机化合物。漆酶的催化能力使其成为在包括有机污染物生物降解和新药合成在内的许多工业领域中潜在应用的有吸引力的候选者。大多数漆酶对高盐敏感,应用有限。然而,一些漆酶不仅耐受一定浓度的盐,而且还会被其激活,因此具有很大的应用潜力。漆酶盐诱导活性增强的机制尚不清楚。在本研究中,我们使用动态光散射、尺寸排阻色谱、分析超速离心、内源荧光发射、圆二色性、紫外-可见光吸收和酶活性测定,来研究海洋来源的漆酶Lac15的结构与活性之间的潜在相关性,其活性受低浓度NaCl促进。结果表明,低浓度的NaCl对蛋白质结构影响很小,该蛋白质在无盐情况下部分折叠;此外,部分折叠而非完全折叠的状态似乎有利于酶活性,并且这种部分折叠状态与活性酶中偶尔观察到的所谓“熔球态”不同。更多数据表明,盐可能通过涉及特定局部位点扰动而非整体结构变化的机制来促进漆酶活性。提出了氯离子的潜在结合位点及其在酶活性促进中的作用。

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