Zhou Man, Fakayode Olugbenga Abiola, Ren Manni, Li Haoxin, Liang Jiakang, Yagoub Abu ElGasim Ahmed, Fan Zhiliang, Zhou Cunshan
School of Food and Biological Engineering, Jiangsu University, Zhenjiang, 212013, People's Republic of China.
Department of Agricultural and Food Engineering, University of Uyo, Uyo, 520001, Akwa Ibom State, Nigeria.
Bioresour Bioprocess. 2023 Mar 23;10(1):21. doi: 10.1186/s40643-023-00640-9.
Lignin has enormous potential as a renewable feedstock for depolymerizing to numerous high-value chemicals. However, lignin depolymerization is challenging owing to its recalcitrant, heterogenous, and limited water-soluble nature. From the standpoint of environmental friendliness and sustainability, enzymatic depolymerization of lignin is of great significance. Notably, laccases play an essential role in the enzymatic depolymerization of lignin and are considered the ultimate green catalysts. Deep eutectic solvent (DES), an efficient media in biocatalysis, are increasingly recognized as the newest and utmost green solvent that highly dissolves lignin. This review centers on a lignin depolymerization strategy by harnessing the good lignin fractionating capability of DES and the high substrate and product selectivity of laccase. Recent progress and insights into the laccase-DES interactions, protein engineering strategies for improving DES compatibility with laccase, and controlling the product selectivity of lignin degradation by laccase or in DES systems are extensively provided. Lastly, the challenges and prospects of the alliance between DES and laccase for lignin depolymerization are discussed. The collaboration of laccase and DES provides a great opportunity to develop an enzymatic route for lignin depolymerization.
木质素作为一种可再生原料,具有巨大潜力,可解聚为多种高价值化学品。然而,由于其顽固、异质且水溶性有限的特性,木质素解聚具有挑战性。从环境友好和可持续性的角度来看,木质素的酶解聚具有重要意义。值得注意的是,漆酶在木质素的酶解聚中起着至关重要的作用,被认为是终极绿色催化剂。深共熔溶剂(DES)作为生物催化中的一种高效介质,越来越被视为能高度溶解木质素的最新且最绿色的溶剂。本综述聚焦于一种木质素解聚策略,该策略利用了DES良好的木质素分级能力以及漆酶对底物和产物的高选择性。本文广泛介绍了漆酶与DES相互作用的最新进展和见解、提高DES与漆酶相容性的蛋白质工程策略,以及在漆酶或DES体系中控制木质素降解产物选择性的方法。最后,讨论了DES与漆酶联合用于木质素解聚面临的挑战和前景。漆酶与DES的合作提供了一个开发木质素解聚酶促途径的绝佳机会。