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A thermostable bacterial lytic polysaccharide monooxygenase with high operational stability in a wide temperature range

机译:一种热稳定的细菌含有多糖单氧化酶,在宽温度范围内具有高运行稳定性

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Lytic polysaccharide monooxygenases (LPMOs) are oxidative, copper-dependent enzymes that function as powerful tools in the turnover of various biomasses, including lignocellulosic plant biomass. While LPMOs are considered to be of great importance for biorefineries, little is known about industrial relevant properties such as the ability to operate at high temperatures. Here, we describe a thermostable, cellulose-active LPMO from a high-temperature compost metagenome (called mgLPMO10). MgLPMO10 was found to have the highest apparent melting temperature (83?°C) reported for an LPMO to date, and is catalytically active up to temperatures of at least 80?°C. Generally, mgLPMO10 showed good activity and operational stability over a wide temperature range. The LPMO boosted cellulose saccharification by recombinantly produced GH48 and GH6 cellobiohydrolases derived from the same metagenome, albeit to a minor extent. Cellulose saccharification studies with a commercial cellulase cocktail (Celluclast?) showed that the performance of this thermostable bacterial LPMO is comparable with that of a frequently utilized fungal LPMO from Thermoascus aurantiacus (TaLPMO9A). The high activity and operational stability of mgLPMO10 are of both fundamental and applied interest. The ability of mgLPMO10 to perform oxidative cleavage of cellulose at 80?°C and the clear synergy with Celluclast? make this enzyme an interesting candidate in the development of thermostable enzyme cocktails for use in lignocellulosic biorefineries.
机译:裂解多糖单氧化酶(LPMO)是氧化的,铜依赖性酶,其在各种生物量的营业额中起作用的功能强大的工具,包括木质纤维素植物生物质。虽然LPMOS被认为是对生物猎物的重要性,但对于工业相关性质,诸如在高温下运行的能力很重要。在这里,我们描述了来自高温堆肥的Metagenome(称为MGLPMO10)的热稳定的纤维素活性LPMO。发现MGLPMO10具有迄今为止的LPMO的最高明显熔化温度(83Ω°C),并且催化激活至少80Ω·℃的温度。通常,MGLPMO10在宽温度范围内显示出良好的活动和操作稳定性。通过重组产生的GH48和GH6纤维素水解酶,衍生自相同的MetageNome的GH6纤维素酶,LPMO增强了纤维素糖化,尽管较小程度。用商业纤维素酶鸡尾酒(Celluclast?)纤维素糖化研究表明,该热稳定细菌LPMO的性能与来自Thermoascus aurantiacus(Talpmo9a)的经常使用的真菌LPMO相当。 MGLPMO10的高活动和操作稳定性都是基本和应用的兴趣。 MGLPMO10在80°C下进行纤维素氧化切割的能力及细胞夹的清晰协同作用?使这酶成为在恒温酶鸡尾酒的开发中用于木质纤维素生物料理的有趣候选者。

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