纤维素酶
生化工程
糖苷水解酶
嗜热菌
定向进化
火球菌属
合理设计
蛋白质工程
生物催化
原材料
生物技术
生物
化学
计算生物学
古细菌
纳米技术
工程类
生物化学
酶
催化作用
材料科学
有机化学
离子液体
突变体
基因
作者
Fatima Akram,Ikram ul Haq,Amna Aqeel,Zeeshan Ahmed,Fatima Iftikhar Shah
标识
DOI:10.1016/j.rser.2021.111597
摘要
From an anthropocentric point of view, human culture has been intricately involved in harnessing the potential of lignocellulosic feedstock to bring the bio-competitive alternative of fossil-based fuel resources. In today's scenario, the impact of hyperthermophiles and their enzymes has been intensely investigated for implementation in various high-temperature biotechnological processes. Already characterized archaeal and eubacterial cellulolytic glycoside hydrolase have shown highly impressive catalytic structures and mechanisms. Several sequence and structural factors have simultaneously been proposed to contribute towards the augmented stability of thermophilic proteins. However, state-of-the-art technologies like the rational designing approach and mechanism of directed evolution have emerged as critical toolkits for broadened industrial applications of recombinant proteins. This manuscript discusses the cellulase engineering techniques to enhance the biological production and stability of thermostable cellulolytic enzymes.
科研通智能强力驱动
Strongly Powered by AbleSci AI