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From gene to biorefinery: microbial β-etherases as promising biocatalysts for lignin valorization

机译:从基因到生物提纯:微生物β-醚酶是木质素增值的有前途的生物催化剂

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摘要

The set-up of biorefineries for the valorization of lignocellulosic biomass will be core in the future to reach sustainability targets. In this area, biomass-degrading enzymes are attracting significant research interest for their potential in the production of chemicals and biofuels from renewable feedstock. Glutathione-dependent β-etherases are emerging enzymes for the biocatalytic depolymerization of lignin, a heterogeneous aromatic polymer abundant in nature. They selectively catalyze the reductive cleavage of β-O-4 aryl-ether bonds which account for 45–60% of linkages present in lignin. Hence, application of β-etherases in lignin depolymerization would enable a specific lignin breakdown, selectively yielding (valuable) low-molecular-mass aromatics. Albeit β-etherases have been biochemically known for decades, only very recently novel β-etherases have been identified and thoroughly characterized for lignin valorization, expanding the enzyme toolbox for efficient β-O-4 aryl-ether bond cleavage. Given their emerging importance and potential, this mini-review discusses recent developments in the field of β-etherase biocatalysis covering all aspects from enzyme identification to biocatalytic applications with real lignin samples.
机译:为实现木质纤维素生物质的增值而建立生物精炼厂将是未来实现可持续发展目标的核心。在该领域,生物质降解酶因其在利用可再生原料生产化学品和生物燃料方面的潜力而引起了广泛的研究兴趣。谷胱甘肽依赖性β-醚酶是用于木质素的生物催化解聚的新兴酶,木质素是自然界中丰富的异质芳族聚合物。它们选择性催化β-O-4芳基醚键的还原裂解,占木质素中键的45-60%。因此,在木质素解聚中应用β-醚酶将能够实现特定的木质素分解,选择性地产生(有价值的)低分子质量的芳族化合物。尽管β-醚酶在生物化学上已经有数十年的历史了,但直到最近才发现了新颖的β-醚酶,并对其木质素的价位进行了全面表征,从而扩展了酶工具箱,可进行有效的β-O-4芳基-醚键裂解。鉴于其新兴的重要性和潜力,本小型综述讨论了β-醚酶生物催化领域的最新进展,涵盖了从酶鉴定到实际木质素样品的生物催化应用的各个方面。

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