Singh Raushan Kumar, Tiwari Manish Kumar, Singh Ranjitha, Lee Jung-Kul
Department of Chemical Engineering, Konkuk University, 1 Hwayang-Dong, Gwangjin-Gu, Seoul 143-701, Korea.
Int J Mol Sci. 2013 Jan 10;14(1):1232-77. doi: 10.3390/ijms14011232.
Enzymes found in nature have been exploited in industry due to their inherent catalytic properties in complex chemical processes under mild experimental and environmental conditions. The desired industrial goal is often difficult to achieve using the native form of the enzyme. Recent developments in protein engineering have revolutionized the development of commercially available enzymes into better industrial catalysts. Protein engineering aims at modifying the sequence of a protein, and hence its structure, to create enzymes with improved functional properties such as stability, specific activity, inhibition by reaction products, and selectivity towards non-natural substrates. Soluble enzymes are often immobilized onto solid insoluble supports to be reused in continuous processes and to facilitate the economical recovery of the enzyme after the reaction without any significant loss to its biochemical properties. Immobilization confers considerable stability towards temperature variations and organic solvents. Multipoint and multisubunit covalent attachments of enzymes on appropriately functionalized supports via linkers provide rigidity to the immobilized enzyme structure, ultimately resulting in improved enzyme stability. Protein engineering and immobilization techniques are sequential and compatible approaches for the improvement of enzyme properties. The present review highlights and summarizes various studies that have aimed to improve the biochemical properties of industrially significant enzymes.
由于天然存在的酶在温和的实验和环境条件下的复杂化学过程中具有固有的催化特性,因此已在工业中得到应用。使用酶的天然形式往往难以实现理想的工业目标。蛋白质工程的最新进展彻底改变了将市售酶开发成更好的工业催化剂的进程。蛋白质工程旨在修饰蛋白质的序列,进而改变其结构,以创造出具有改进功能特性(如稳定性、比活性、受反应产物抑制的程度以及对非天然底物的选择性)的酶。可溶性酶通常固定在固体不溶性载体上,以便在连续过程中重复使用,并便于在反应后经济地回收酶,同时其生化特性不会有任何显著损失。固定化赋予酶对温度变化和有机溶剂相当大的稳定性。通过连接子将酶多点和多亚基共价连接到适当功能化的载体上,可为固定化酶结构提供刚性,最终提高酶的稳定性。蛋白质工程和固定化技术是用于改善酶特性的相继且兼容的方法。本综述着重介绍并总结了旨在改善具有工业重要性的酶的生化特性的各种研究。