Exploring the diversity of β-glucosidase: Classification, catalytic mechanism, molecular characteristics, kinetic models, and applications

生物炼制 葡萄糖苷酶 糖苷水解酶 糖苷键 生化工程 化学 生物技术 纤维素乙醇 生物化学 水解 计算生物学 生物 原材料 有机化学 纤维素 工程类
作者
Mehmet Emre Erkanli,Khalid El‐Halabi,Jin Ryoun Kim
出处
期刊:Enzyme and microbial technology [Elsevier BV]
卷期号:173: 110363-110363 被引量:35
标识
DOI:10.1016/j.enzmictec.2023.110363
摘要

High-value chemicals and energy-related products can be produced from biomass. Biorefinery technology offers a sustainable and cost-effective method for this high-value conversion. β-glucosidase is one of the key enzymes in biorefinery processes, catalyzing the production of glucose from aryl-glycosides and cello-oligosaccharides via the hydrolysis of β-glycosidic bonds. Although β-glucosidase plays a critical catalytic role in the utilization of cellulosic biomass, its efficacy is often limited by substrate or product inhibitions, low thermostability, and/or insufficient catalytic activity. To provide a detailed overview of β-glucosidases and their benefits in certain desired applications, we collected and summarized extensive information from literature and public databases, covering β-glucosidases in different glycosidase hydrolase families and biological kingdoms. These β-glucosidases show differences in amino acid sequence, which are translated into varying degrees of the molecular properties critical in enzymatic applications. This review describes studies on the diversity of β-glucosidases related to the classification, catalytic mechanisms, key molecular characteristics, kinetics models, and applications, and highlights several β-glucosidases displaying high stability, activity, and resistance to glucose inhibition suitable for desired biotechnological applications.
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