合理设计
酶
水解酶
热稳定性
芽孢杆菌(形态)
糖基
化学
糖苷水解酶
肺表面活性物质
蛋白质工程
生物化学
生物
有机化学
材料科学
微生物学
纳米技术
作者
Selin Ece,Serap Evran,Jan-Oliver Janda,Rainer Merkl,Reinhard Sterner
标识
DOI:10.1093/protein/gzv001
摘要
Neopullulanase, a glycosyl hydrolase from Bacillus stearothermophilus (bsNpl), is a potentially valuable enzyme for starch and detergent industries. However, as the protein is not active at elevated temperatures and high surfactant concentrations, we aimed to increase its stability by rational enzyme design. Nine potentially destabilizing cavities were identified in the crystal structure of the enzyme. Based on computational predictions, these cavities were filled by residues with bulkier side chains. The five Asp46Glu, Val239Leu, Val404Leu, Ser407Thr and Ala566Leu exchanges resulted in a drastic stabilization of bsNpl against inactivation by heat and detergents. The catalytic activity of the variants was identical to the wild-type enzyme.
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