热稳定性
适应性
生化工程
嗜热菌
合理设计
生物燃料
定向进化
生物技术
生物
工程类
酶
生物化学
突变体
生态学
遗传学
基因
作者
Huawen Han,Zhenmin Ling,Aman Khan,Amanpreet Kaur Virk,Saurabh Kulshrestha,Xiangkai Li
标识
DOI:10.1016/j.biortech.2019.01.087
摘要
Thermozymes (from thermophiles or hyperthermophiles) offer obvious advantages due to their excellent thermostability, broad pH adaptation, and hydrolysis ability, resulting in diverse industrial applications including food, paper, and textile processing, biofuel production. However, natural thermozymes with low yield and poor adaptability severely hinder their large-scale applications. Extensive studies demonstrated that using genetic modifications such as directed evolution, semi-rational design, and rational design, expression regulations and chemical modifications effectively improved enzyme’s yield, thermostability and catalytic efficiency. However, mechanism-based techniques for thermozymes improvements and applications need more attention. In this review, stabilizing mechanisms of thermozymes are summarized for thermozymes improvements, and these improved thermozymes eventually have large-scale industrial applications.
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