期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
普鲁兰酶N467G突变体的酶学性质分析 被引量:1
1
作者 张亚楠 申培立 +4 位作者 牛丹丹 田康明 kugen permaul SUREN SINGH 王正祥 《食品与发酵工业》 CAS CSCD 北大核心 2021年第5期7-11,共5页
在淀粉制糖工业中,普鲁兰酶通常与糖化酶配合使用,其在酸性pH和较高温度下的催化活力是影响淀粉脱支效率的主要因素。该研究通过对长野芽胞杆菌(Bacillus naganoensis)普鲁兰酶蛋白质解折叠自由能的差值(ΔΔG)的计算预测和突变位点稳... 在淀粉制糖工业中,普鲁兰酶通常与糖化酶配合使用,其在酸性pH和较高温度下的催化活力是影响淀粉脱支效率的主要因素。该研究通过对长野芽胞杆菌(Bacillus naganoensis)普鲁兰酶蛋白质解折叠自由能的差值(ΔΔG)的计算预测和突变位点稳定性分析,选择突变位点并进行定点突变,获得突变体N467G。与野生型普鲁兰酶分子相比,突变体N467G的最适作用温度提高至60℃,最适作用pH降低至4.5;其在60℃条件下孵育2.5 h或在pH 3.5~5.5孵育1 h残留酶活力均保持在80%以上,稳定性明显提高。此突变体的获得为其后续高效表达与工业化应用奠定了重要基础。 展开更多
关键词 普鲁兰酶 定向进化 最适作用pH 最适作用温度
下载PDF
Carbon utilization profile of a thermophilic fungus, <i>Thermomyces lanuginosus</i>using phenotypic microarray
2
作者 Nokuthula Peace Mchunu kugen permaul +1 位作者 Maqsudul Alam Suren Singh 《Advances in Bioscience and Biotechnology》 2013年第9期24-32,共9页
The thermophilic filamentous fungus, Thermomyces lanuginosus produces the largest amount of xylanase reported. In addition to this, it expresses large amount of other enzymes that have been used industrially or have a... The thermophilic filamentous fungus, Thermomyces lanuginosus produces the largest amount of xylanase reported. In addition to this, it expresses large amount of other enzymes that have been used industrially or have academic interest. Thus, this fungus has a potential to be applied for biomass conversion to produce biofuel or other applications. In this study, the Biolog system was used to characterize the utilisation and growth of T. lanuginosus on 95 carbon sources. The carbohydrates based compounds, both single sugars and oligosaccharide, showed the best utilisation profile, with the pentose sugar xylose inducing the highest growth, followed by trehelose, raffinose, D-mannose turanose fructose and glucose. Among oligosaccharides, sucrose had the highest mycelium formation followed by stachyose, maltose, maltotriose, glycogen and dextrin. Interestingly the fungus also grew well on cellobiose suggesting that this fungus can produce cellulose hydrolysing proteins. D-alanine was the best amino acid to promote fungal growth while the effect of other amino acids tested was similar to the control. These results demonstrate the ability of this fungus to grow relatively well on most plant based compounds thus making this fungus a possible candidate for plant biomass conversion which can be applied to a number of biotechnological applications including biofuel production. 展开更多
关键词 FILAMENTOUS Fungi THERMOPHILIC Carbon Source HEXOSE PENTOSE
下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部