糖生物学
定向进化
糖基转移酶
单元格排序
高通量筛选
计算生物学
大肠杆菌
生物化学
人口
蛋白质工程
糖组学
荧光
底物特异性
基质(水族馆)
突变体
细胞
生物
化学
聚糖
酶
基因
糖蛋白
社会学
人口学
物理
量子力学
生态学
作者
Amir Aharoni,K. Thieme,Cecilia Chiu,Sabrina Buchini,Luke L. Lairson,Hongming Chen,N.C.J. Strynadka,Warren W. Wakarchuk,Stephen G. Withers
出处
期刊:Nature Methods
[Springer Nature]
日期:2006-07-21
卷期号:3 (8): 609-614
被引量:235
摘要
Engineering of glycosyltransferases (GTs) with desired substrate specificity for the synthesis of new oligosaccharides holds great potential for the development of the field of glycobiology. However, engineering of GTs by directed evolution methodologies is hampered by the lack of efficient screening systems for sugar-transfer activity. We report here the development of a new fluorescence-based high-throughput screening (HTS) methodology for the directed evolution of sialyltransferases (STs). Using this methodology, we detected the formation of sialosides in intact Escherichia coli cells by selectively trapping the fluorescently labeled transfer products in the cell and analyzing and sorting the resulting cell population using a fluorescence-activated cell sorter (FACS). We screened a library of >10(6) ST mutants using this methodology and found a variant with up to 400-fold higher catalytic efficiency for transfer to a variety of fluorescently labeled acceptor sugars, including a thiosugar, yielding a metabolically stable product.
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