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酶促辅因子再生系统:效率评估的新视角。

Enzymatic cofactor regeneration systems: A new perspective on efficiency assessment.

作者信息

Bachosz Karolina, Zdarta Jakub, Bilal Muhammad, Meyer Anne S, Jesionowski Teofil

机构信息

Institute of Chemical Technology and Engineering, Faculty of Chemical Technology, Poznan University of Technology, Berdychowo 4, PL-60965 Poznan, Poland; Department of Biotechnology and Biomedicine, DTU Bioengineering, Technical University of Denmark, Soltofts Plads 227, DK-2800 Kgs. Lyngby, Denmark.

Institute of Chemical Technology and Engineering, Faculty of Chemical Technology, Poznan University of Technology, Berdychowo 4, PL-60965 Poznan, Poland.

出版信息

Sci Total Environ. 2023 Apr 10;868:161630. doi: 10.1016/j.scitotenv.2023.161630. Epub 2023 Jan 16.

Abstract

Nowadays, the specificity of enzymatic processes makes them more and more important every year, and their usage on an industrial scale seems to be necessary. Enzymatic cofactors, however, play a crucial part in the prospective applications of enzymes, because they are indispensable for conducting highly effective biocatalytic activities. Due to the relatively high cost of these compounds and their consumption during the processes carried out, it has become crucial to develop systems for cofactor regeneration. Therefore, in this review, an attempt was made to summarize current knowledge on enzymatic regeneration methods, which are characterized by high specificity, non-toxicity and reported to be highly efficient. The regeneration of cofactors, such as nicotinamide dinucleotides, coenzyme A, adenosine 5'-triphosphate and flavin nucleotides, which are necessary for the proper functioning of a large number of enzymes, is discussed, as well as potential directions for further development of these systems are highlighted. This review discusses a range of highly effective cofactor regeneration systems along with the productive synthesis of many useful chemicals, including the simultaneous renewal of several cofactors at the same time. Additionally, the impact of the enzyme immobilization process on improving the stability and the potential for multiple uses of the developed cofactor regeneration systems was also presented. Moreover, an attempt was made to emphasize the importance of the presented research, as well as the identification of research gaps, which mainly result from the lack of available literature on this topic.

摘要

如今,酶促过程的特异性使其每年都变得越来越重要,在工业规模上使用它们似乎很有必要。然而,酶辅因子在酶的潜在应用中起着关键作用,因为它们对于进行高效的生物催化活性是不可或缺的。由于这些化合物成本相对较高且在进行的过程中会被消耗,因此开发辅因子再生系统变得至关重要。因此,在本综述中,我们试图总结当前关于酶促再生方法的知识,这些方法具有高特异性、无毒性且据报道效率很高。文中讨论了多种酶正常发挥功能所必需的辅因子(如烟酰胺二核苷酸、辅酶A、腺苷5'-三磷酸和黄素核苷酸)的再生,同时也强调了这些系统进一步发展的潜在方向。本综述讨论了一系列高效的辅因子再生系统以及许多有用化学品的生产性合成,包括同时再生多种辅因子。此外,还介绍了酶固定化过程对提高已开发的辅因子再生系统的稳定性和多次使用潜力的影响。此外,我们试图强调所呈现研究的重要性,以及确定研究空白,这些空白主要是由于缺乏关于该主题的可用文献所致。

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