Picart Pere, Liu Haifeng, Grande Philipp M, Anders Nico, Zhu Leilei, Klankermayer Jürgen, Leitner Walter, Domínguez de María Pablo, Schwaneberg Ulrich, Schallmey Anett
Institut für Biotechnologie, RWTH Aachen University, Worringerweg 3, 52074, Aachen, Germany.
Institut für Technische und Makromolekulare Chemie, RWTH Aachen University, Worringerweg 1, 52074, Aachen, Germany.
Appl Microbiol Biotechnol. 2017 Aug;101(15):6277-6287. doi: 10.1007/s00253-017-8360-z. Epub 2017 Jun 21.
Lignin is a biomass-derived aromatic polymer that has been identified as a potential renewable source of aromatic chemicals and other valuable compounds. The valorization of lignin, however, represents a great challenge due to its high inherent functionalization, what compromises the identification of chemical routes for its selective depolymerization. In this work, an in vitro biocatalytic depolymerization process is presented, that was applied to lignin samples obtained from beech wood through OrganoCat pretreatment, resulting in a mixture of lignin-derived aromatic monomers. The reported biocracking route comprises first a laccase-mediator system to specifically oxidize the Cα hydroxyl group in the β-O-4 structure of lignin. Subsequently, selective β-O-4 ether cleavage of the oxidized β-O-4 linkages is achieved with β-etherases and a glutathione lyase. The combined enzymatic approach yielded an oily fraction of low-molecular-mass aromatic compounds, comprising coniferylaldehyde and other guaiacyl and syringyl units, as well as some larger (soluble) fractions. Upon further optimization, the reported biocatalytic route may open a valuable approach for lignin processing and valorization under mild reaction conditions.
木质素是一种源自生物质的芳香族聚合物,已被确定为芳香族化学品和其他有价值化合物的潜在可再生来源。然而,木质素的增值面临巨大挑战,因为其高度的固有官能化,这不利于确定其选择性解聚的化学途径。在这项工作中,提出了一种体外生物催化解聚过程,该过程应用于通过有机催化预处理从山毛榉木材中获得的木质素样品,得到了木质素衍生的芳香族单体混合物。所报道的生物裂解途径首先包括漆酶-介质系统,以特异性氧化木质素β-O-4结构中的Cα羟基。随后,利用β-醚酶和谷胱甘肽裂解酶实现氧化的β-O-4键的选择性β-O-4醚裂解。这种联合酶促方法产生了低分子量芳香族化合物的油状馏分,包括松柏醛和其他愈创木基和紫丁香基单元,以及一些较大的(可溶)馏分。经过进一步优化,所报道的生物催化途径可能为在温和反应条件下的木质素加工和增值开辟一条有价值的途径。