Engineering lytic polysaccharide monooxygenases (LPMOs) for immobilisation on carbon nanotubes

IF 6.5 1区 化学 Q2 CHEMISTRY, PHYSICAL Journal of Catalysis Pub Date : 2025-07-01 Epub Date: 2025-03-27 DOI:10.1016/j.jcat.2025.116108
Kelsi R. Hall , Carlotta Pontremoli , Tom Z. Emrich-Mills , Fabrizio Careddu , Matteo Bonomo , Claudia Barolo , Vincent G.H. Eijsink , Silvia Bordiga , Morten Sørlie
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Abstract

Lytic polysaccharide monooxygenases (LPMOs) are mononuclear copper-containing enzymes that are able to oxidise C–H bonds in the glycoside linkages of polysaccharides. However, LPMOs are prone to oxidative damage, particularly in the absence of an adequate substrate. In this work, we investigated whether we could immobilise LPMOs and whether such immobilisation could enhance the stability of LPMOs while preserving the essential catalytic properties of the copper active site. Two LPMOs from different families, LsAA9A and ScAA10C, were selected and immobilised on carboxylic acid functionalised multiwalled-CNTs, using a two-step carbodiimide activation reaction. To improve the frequency of enzyme immobilisation and guide site-specific orientation, the enzymes were engineered, introducing two lysine residues on two different loops on the LPMO surface. Assessment of the oxidase and peroxidase activities of the LPMO-MWCNT bioconjugates showed that immobilisation of the engineered LPMO was much more efficient compared to the wild-type enzymes. The immobilised enzymes still showed activity on several substrates, confirming retained catalytic competence following immobilisation. Incubation of the free and immobilised LPMOs under damaging conditions indicated a protective effect of immobilisation for LsAA9A-MWCNT, indicating that, for some LPMOs, immobilisation on MWCNTs may protect against oxidative damage.

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工程裂解多糖单加氧酶(LPMOs)固定化碳纳米管
多糖单加氧酶(LPMOs)是一种单核含铜酶,能够氧化多糖糖苷键中的C-H键。然而,LPMOs容易氧化损伤,特别是在缺乏足够底物的情况下。在这项工作中,我们研究了我们是否可以固定化LPMOs,以及这种固定化是否可以增强LPMOs的稳定性,同时保留铜活性位点的基本催化性能。采用两步碳二亚胺活化反应,选择了来自不同家族的LsAA9A和ScAA10C两种LPMOs,并将其固定在羧酸功能化的多壁碳纳米管上。为了提高酶固定的频率和引导位点特异性取向,酶被工程化,在LPMO表面的两个不同环上引入两个赖氨酸残基。对LPMO- mwcnt生物偶联物氧化酶和过氧化物酶活性的评估表明,与野生型酶相比,工程LPMO的固定化效率更高。固定化酶在几种底物上仍然显示出活性,证实了固定化后保留的催化能力。在损伤条件下培养游离和固定的LPMOs表明,固定对LsAA9A-MWCNT具有保护作用,这表明,对于一些LPMOs,固定在mwcnt上可以保护其免受氧化损伤。
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来源期刊
Journal of Catalysis
Journal of Catalysis 工程技术-工程:化工
CiteScore
12.30
自引率
5.50%
发文量
447
审稿时长
31 days
期刊介绍: The Journal of Catalysis publishes scholarly articles on both heterogeneous and homogeneous catalysis, covering a wide range of chemical transformations. These include various types of catalysis, such as those mediated by photons, plasmons, and electrons. The focus of the studies is to understand the relationship between catalytic function and the underlying chemical properties of surfaces and metal complexes. The articles in the journal offer innovative concepts and explore the synthesis and kinetics of inorganic solids and homogeneous complexes. Furthermore, they discuss spectroscopic techniques for characterizing catalysts, investigate the interaction of probes and reacting species with catalysts, and employ theoretical methods. The research presented in the journal should have direct relevance to the field of catalytic processes, addressing either fundamental aspects or applications of catalysis.
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