Improved thermal stability and activity in the cold-adapted lipase B from Candida antarctica following chemical modification with oxidized polysaccharides.
第一作者:
Khawar Sohail,Siddiqui
第一单位:
School of Biotechnology and Biomolecular Sciences, The University of New South Wales, Sydney, 2052, NSW, Australia.
作者:
主题词
念珠菌属(Candida);冷温度(Cold Temperature);剂量效应关系, 药物(Dose-Response Relationship, Drug);真菌蛋白质类(Fungal Proteins);热温度(Hot Temperature);氢离子浓度(Hydrogen-Ion Concentration);脂肪酶(Lipase);氧(Oxygen);聚合物(Polymers);多糖类(Polysaccharides);蛋白质构象(Protein Conformation);蛋白质变性(Protein Denaturation);蛋白质工程(Protein Engineering);蛋白质复性(Protein Renaturation);还原剂(Reducing Agents);底物特异性(Substrate Specificity);温度(Temperature);热力学(Thermodynamics);时间因素(Time Factors)
DOI
10.1007/s00792-005-0464-1
PMID
15999221
发布时间
2018-11-13
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Extremophiles
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