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用于工业的嗜极氧化还原酶:五个成功案例及前景展望

Extremophilic Oxidoreductases for the Industry: Five Successful Examples With Promising Projections.

作者信息

Espina Giannina, Atalah Joaquín, Blamey Jenny M

机构信息

Fundación Biociencia, Santiago, Chile.

Facultad de Química y Biología, Universidad de Santiago de Chile, Santiago, Chile.

出版信息

Front Bioeng Biotechnol. 2021 Aug 12;9:710035. doi: 10.3389/fbioe.2021.710035. eCollection 2021.

Abstract

In a global context where the development of more environmentally conscious technologies is an urgent need, the demand for enzymes for industrial processes is on the rise. Compared to conventional chemical catalysts, the implementation of biocatalysis presents important benefits including higher selectivity, increased sustainability, reduction in operating costs and low toxicity, which translate into cleaner production processes, lower environmental impact as well as increasing the safety of the operating staff. Most of the currently available commercial enzymes are of mesophilic origin, displaying optimal activity in narrow ranges of conditions, which limits their actual application under industrial settings. For this reason, enzymes from extremophilic microorganisms stand out for their specific characteristics, showing higher stability, activity and robustness than their mesophilic counterparts. Their unique structural adaptations allow them to resist denaturation at high temperatures and salinity, remain active at low temperatures, function at extremely acidic or alkaline pHs and high pressure, and participate in reactions in organic solvents and unconventional media. Because of the increased interest to replace chemical catalysts, the global enzymes market is continuously growing, with hydrolases being the most prominent type of enzymes, holding approximately two-third share, followed by oxidoreductases. The latter enzymes catalyze electron transfer reactions and are one of the most abundant classes of enzymes within cells. They hold a significant industrial potential, especially those from extremophiles, as their applications are multifold. In this article we aim to review the properties and potential applications of five different types of extremophilic oxidoreductases: laccases, hydrogenases, glutamate dehydrogenases (GDHs), catalases and superoxide dismutases (SODs). This selection is based on the extensive experience of our research group working with these particular enzymes, from the discovery up to the development of commercial products available for the research market.

摘要

在全球迫切需要发展更具环保意识技术的背景下,工业生产过程中对酶的需求不断增加。与传统化学催化剂相比,生物催化的应用具有诸多重要优势,包括更高的选择性、更强的可持续性、运营成本的降低以及低毒性,这意味着生产过程更清洁、对环境的影响更小,同时也提高了操作人员的安全性。目前大多数市售酶来源于嗜温微生物,在狭窄的条件范围内表现出最佳活性,这限制了它们在工业环境中的实际应用。因此,来自极端微生物的酶因其特殊特性而脱颖而出,比嗜温酶表现出更高的稳定性、活性和鲁棒性。它们独特的结构适应性使它们能够在高温和高盐度下抵抗变性,在低温下保持活性,在极端酸性或碱性pH值以及高压下发挥作用,并参与有机溶剂和非常规介质中的反应。由于人们越来越倾向于取代化学催化剂,全球酶市场持续增长,水解酶是最主要的酶类型,约占三分之二的份额,其次是氧化还原酶。后者催化电子转移反应,是细胞内最丰富的酶类之一。它们具有巨大的工业潜力,特别是来自极端微生物的氧化还原酶,因为它们的应用十分广泛。在本文中,我们旨在综述五种不同类型的极端嗜热氧化还原酶的特性和潜在应用:漆酶、氢化酶、谷氨酸脱氢酶(GDH)、过氧化氢酶和超氧化物歧化酶(SOD)。这种选择是基于我们研究小组在研究这些特定酶方面的丰富经验,从发现到开发可供研究市场使用的商业产品。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7c6b/8387880/7dfc92467f6e/fbioe-09-710035-g001.jpg

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