Department of Chemistry, State University of New York-ESF, Syracuse, NY 13210, USA.
Science and Technology, Medtronic Incorporated, 710 Medtronic Parkway, Minneapolis, MN 55432, USA.
Molecules. 2024 Feb 24;29(5):989. doi: 10.3390/molecules29050989.
Enzymes play an important role in numerous natural processes and are increasingly being utilized as environmentally friendly substitutes and alternatives to many common catalysts. Their essential advantages are high catalytic efficiency, substrate specificity, minimal formation of byproducts, and low energy demand. All of these benefits make enzymes highly desirable targets of academic research and industrial development. This review has the modest aim of briefly overviewing the classification, mechanism of action, basic kinetics and reaction condition effects that are common across all six enzyme classes. Special attention is devoted to immobilization strategies as the main tools to improve the resistance to environmental stress factors (temperature, pH and solvents) and prolong the catalytic lifecycle of these biocatalysts. The advantages and drawbacks of methods such as macromolecular crosslinking, solid scaffold carriers, entrapment, and surface modification (covalent and physical) are discussed and illustrated using numerous examples. Among the hundreds and possibly thousands of known and recently discovered enzymes, hydrolases and oxidoreductases are distinguished by their relative availability, stability, and wide use in synthetic applications, which include pharmaceutics, food and beverage treatments, environmental clean-up, and polymerizations. Two representatives of those groups-laccase (an oxidoreductase) and lipase (a hydrolase)-are discussed at length, including their structure, catalytic mechanism, and diverse usage. Objective representation of the current status and emerging trends are provided in the main conclusions.
酶在许多自然过程中发挥着重要作用,并且越来越多地被用作许多常见催化剂的环保替代品和替代品。它们的主要优点是催化效率高、底物特异性、副产物形成最少以及能量需求低。所有这些优势使得酶成为学术研究和工业发展的高度理想目标。本文的目的是简要概述所有六类酶共有的分类、作用机制、基本动力学和反应条件效应。特别关注固定化策略,因为它是提高酶对环境应激因素(温度、pH 和溶剂)的抵抗力和延长这些生物催化剂的催化生命周期的主要工具。本文使用大量实例讨论和说明了大分子交联、固体支架载体、包埋和表面修饰(共价和物理)等方法的优缺点。在数以百计甚至数千种已知和最近发现的酶中,水解酶和氧化还原酶因其相对可用性、稳定性以及在合成应用(包括制药、食品和饮料处理、环境净化和聚合)中的广泛应用而脱颖而出。本文详细讨论了这两类酶中的两种代表——漆酶(氧化还原酶)和脂肪酶(水解酶),包括它们的结构、催化机制和多样化的用途。在主要结论中提供了对当前现状和新兴趋势的客观描述。