单加氧酶
生物化学
纤维二糖
纤维二糖脱氢酶
纤维素酶
化学
糖苷键
多糖
溶解循环
酶
抗坏血酸
糖苷水解酶
劈开
氧化酶
氧化磷酸化
蛋白质工程
纤维素
组氨酸
脱氢酶
代谢工程
定向进化
氧化还原酶
单糖
活动站点
工业微生物学
生物
作者
Musaddique Hossain,Shalini Das,Subba Reddy Dodda,KAMALPREET SINGH,Tiyasa Bhuniya,Tiasha Ghosh,Sudit S. Mukhopadhyay
标识
DOI:10.1080/07388551.2025.2612611
摘要
Lytic polysaccharide monooxygenases (LPMOs) are auxiliary metalloenzymes that play a crucial role in the degradation of polysaccharides through an oxidative mechanism, distinguishing them from the traditional glycoside hydrolases. Although LPMOs were first identified in 1992, their functional identity and unique oxidative activity were not fully understood until the year 2010. These enzymes cleave at the C1 or C4 position of glycosidic bonds in polysaccharides using molecular oxygen and reductants such as ascorbic acid or cellobiose dehydrogenase (CDH). LPMOs exhibit significant sequence diversity across eight known families and operate via complex mechanisms. Structurally, LPMOs have a conserved active site with a copper ion coordinated by two histidine residues, known as the "histidine brace" which is crucial for their oxidative activity Their ability to enhance the efficiency of cellulase enzymes makes them highly valuable in the bio refinery industry. This review focuses on details of: regioselectivity, reaction mechanism, protein engineering strategies, and industrial applications of LPMO. It also emphasizes the building correlation between challenges at the industrial level and their possible solutions through enzyme engineering.
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