糖基转移酶
糖生物学
聚糖
糖苷水解酶
热稳定性
定向进化
蛋白质工程
突变
生物化学
底物特异性
化学
计算生物学
生物
酶
糖蛋白
突变
基因
突变体
作者
Susan M. Hancock,Mark D. Vaughan,Stephen G. Withers
标识
DOI:10.1016/j.cbpa.2006.07.015
摘要
In recent years, substantial advances have been made in the engineering of glycosidases and glycosyltransferases for the synthesis and degradation of glycan structures. Key developments include improvement of the thermostability of xylanase through comprehensive saturation mutagenesis, creation of the first glycosynthase derived from an inverting glycosidase and the emergence of a new class of modified glycosidases capable of efficiently synthesizing thioglycosidic linkages. Of particular note is the increased use of random mutagenesis and directed evolution tactics for tailoring glycosidase activity. Although the engineering of glycosyltransferases is still in its early stages, recent work on the structure-based alteration of substrate specificity and the manipulation of glycosyltransferase profiles in whole cells to effect complex changes in in vivo glycobiology probably foreshadows a wave of considerable innovation in this area.
科研通智能强力驱动
Strongly Powered by AbleSci AI