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Modification of lignin in sugarcane bagasse by a monocopper hydrogen peroxide-generating oxidase from Thermobifida fusca

机译:产自Thermobifida fusca的过氧化单铜过氧化氢酶对甘蔗渣中木质素的修饰

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Agricultural lignocelluloses could represent great resources for the production of biofuels and renewable chemicals if the recalcitrant lignin polymer could be efficiently removed without negatively impacting the environment. Recently, a monocopper polyphenol oxidase (Tfu1114) from Thermobifida fusca was found capable of assisting the bacterium's own xylanase/cellulase to release reducing sugars from sugarcane bagasse. This study demonstrates that molecular oxygen was reduced to hydrogen peroxide by Tfu1114, coupled to the oxidation of 2,6-dimethoxyphenol, alkaline lignin, or sugarcane bagasse. Tfu1114 was able to reduce the total phenolic content of alkaline lignin and shift the molecular weight distribution to species with smaller sizes. Dilignol subunits such as syringaresinol and simulanol were generated in the hydrolysate of bagasse treated with Tfu1114. FTIR analysis suggests that Tfu1114 removed some C-C and/or C-O bonds adjacent to aromatic rings of lignin. From an applied perspective, Tfu1114 and cellulases acted in concert to release reducing sugars that were as usable as glucose for the cultivation of Escherichia coli, suggesting that toxins such as furfural and furan were absent, or at ignorable concentrations, in the hydrolysate. Tfu1114, therefore, represents a new type of lignin-degrading enzyme with potential to provide an eco-friendly way to modify the lignin in lignocellulose. (C) 2016 Published by Elsevier Ltd.
机译:如果可以在不对环境造成负面影响的情况下,有效地去除顽固性木质素聚合物,则农业木质纤维素将成为生产生物燃料和可再生化学品的重要资源。最近,发现了来自Thermobifida fusca的单铜多酚氧化酶(Tfu1114)能够协助细菌自身的木聚糖酶/纤维素酶从甘蔗渣中释放还原糖。这项研究表明,Tfu1114将分子氧还原为过氧化氢,并氧化了2,6-二甲氧基苯酚,碱性木质素或甘蔗渣。 Tfu1114能够降低碱性木质素的总酚含量,并将分子量分布转移至较小尺寸的物种。在用Tfu1114处理的甘蔗渣的水解物中,生成了丁香酚亚基,如丁香脂醇和Simulanol。 FTIR分析表明,Tfu1114除去了木质素芳香环附近的一些C-C和/或C-O键。从应用的角度来看,Tfu1114和纤维素酶协同作用,释放还原糖,该还原糖可与葡萄糖一起用于大肠杆菌的培养,这表明水解产物中不存在糠醛和呋喃等毒素,或者其浓度可燃。因此,Tfu1114代表了一种新型的木质素降解酶,具有提供一种生态友好的方式来修饰木质纤维素中木质素的潜力。 (C)2016由Elsevier Ltd.出版

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