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通过修饰保守的谷氨酸残基工程化A型染料脱色过氧化物酶

Engineering A-type Dye-Decolorizing Peroxidases by Modification of a Conserved Glutamate Residue.

作者信息

Hermann Enikö, Rodrigues Carolina F, Martins Lígia O, Peterbauer Clemens, Oostenbrink Chris

机构信息

Institute of Food Technology, Department of Food Science and Technology, University of Natural Resources and Life Sciences, Vienna, Muthgasse 11, 1190, Vienna, Austria.

Institute for Molecular Modeling and Simulation, Department of Material Science and Life Sciences, University of Natural Resources and Life Sciences, Vienna, Muthgasse 18, 1190, Vienna, Austria.

出版信息

Chembiochem. 2024 May 2;25(9):e202300872. doi: 10.1002/cbic.202300872. Epub 2024 Apr 8.

Abstract

Dye-decolorizing peroxidases (DyPs) are recently identified microbial enzymes that have been used in several Biotechnology applications from wastewater treatment to lignin valorization. However, their properties and mechanism of action still have many open questions. Their heme-containing active site is buried by three conserved flexible loops with a putative role in modulating substrate access and enzyme catalysis. Here, we investigated the role of a conserved glutamate residue in stabilizing interactions in loop 2 of A-type DyPs. First, we did site saturation mutagenesis of this residue, replacing it with all possible amino acids in bacterial DyPs from Bacillus subtilis (BsDyP) and from Kitasatospora aureofaciens (KaDyP1), the latter being characterized here for the first time. We screened the resulting libraries of variants for activity towards ABTS and identified variants with increased catalytic efficiency. The selected variants were purified and characterized for activity and stability. We furthermore used Molecular Dynamics simulations to rationalize the increased catalytic efficiency and found that the main reason is the electron channeling becoming easier from surface-exposed tryptophans. Based on our findings, we also propose that this glutamate could work as a pH switch in the wild-type enzyme, preventing intracellular damage.

摘要

染料脱色过氧化物酶(DyPs)是最近发现的微生物酶,已被用于从废水处理到木质素增值等多种生物技术应用中。然而,它们的性质和作用机制仍有许多未解决的问题。它们含血红素的活性位点被三个保守的柔性环所掩埋,这些环在调节底物进入和酶催化方面可能发挥作用。在这里,我们研究了一个保守的谷氨酸残基在稳定A型DyPs环2中相互作用的作用。首先,我们对该残基进行了位点饱和诱变,用枯草芽孢杆菌(BsDyP)和金黄色链霉菌(KaDyP1)的细菌DyPs中所有可能的氨基酸替换它,后者在此首次被表征。我们筛选了所得变体文库对ABTS的活性,并鉴定出催化效率提高的变体。对所选变体进行纯化,并对其活性和稳定性进行表征。我们还使用分子动力学模拟来解释催化效率的提高,发现主要原因是表面暴露的色氨酸使电子传递变得更容易。基于我们的发现我们还提出,这种谷氨酸在野生型酶中可能起到pH开关的作用,防止细胞内损伤。

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