Institute of Molecular Biotechnology, Graz University of Technology, NAWI Graz, Petersgasse 14, Graz, Austria.
TU Wien, Institute of Applied Synthetic Chemistry, Getreidemarkt 9, 163-OC, Vienna 1060, Austria.
J Biotechnol. 2024 Nov 20;395:189-204. doi: 10.1016/j.jbiotec.2024.09.020. Epub 2024 Oct 1.
Double bonds are prevalent in various substrates and renewable feedstocks, and their cleavage typically necessitates harsh reaction conditions involving high temperatures, organic solvents, and hazardous catalysts such as heavy metals or ozone. This review explores the sustainable enzymatic alternatives developed by nature for alkene cleavage. It provides a comprehensive overview of alkene-cleaving enzymes, detailing their mechanisms, substrate specificities, and applications. The enzymes discussed include those acting on aliphatic, cyclic, and activated aromatic systems. Emphasizing the significance of these biocatalysts in green chemistry and biocatalysis, this review highlights their potential to replace traditional chemical oxidants with safer, cost-effective, and environmentally friendly options. Future research directions include expanding enzyme substrate scopes, enhancing their operational stability and activity, and integrating them into scalable processes for broader application in the pharmaceutical, flavor, and fragrance industries.
双键普遍存在于各种基质和可再生原料中,其断裂通常需要苛刻的反应条件,包括高温、有机溶剂和危险催化剂(如重金属或臭氧)。本综述探讨了自然界为烯烃断裂开发的可持续酶替代物。它全面概述了烯烃裂解酶,详细介绍了它们的机制、底物特异性和应用。讨论的酶包括作用于脂肪族、环状和活化芳香族系统的酶。强调了这些生物催化剂在绿色化学和生物催化中的重要性,本综述突出了它们用更安全、更具成本效益和更环保的替代方案替代传统化学氧化剂的潜力。未来的研究方向包括扩大酶的底物范围、提高其操作稳定性和活性,并将其整合到可扩展的工艺中,以更广泛地应用于制药、香料和香精行业。