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Engineering catalytic efficiency of thermophilic lipase from <i>Geobacillus zalihae</i>by hydrophobic residue mutation near the catalytic pocket 被引量:1
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作者 Roswanira abdul Wahab Mahiran Basri +3 位作者 mohd basyaruddin abdul rahman Raja Noor Zaliha Raja abdul rahman Abu Bakar Salleh Leow Thean Chor 《Advances in Bioscience and Biotechnology》 2012年第2期158-167,共10页
In-silico and experimental investigations were conducted to explore the effects of substituting hydrophobic residues;Val, Met, Leu, Ile, Trp and Phe into the oxyanion Q114 of T1 lipase. We hypothesized that the oxyani... In-silico and experimental investigations were conducted to explore the effects of substituting hydrophobic residues;Val, Met, Leu, Ile, Trp and Phe into the oxyanion Q114 of T1 lipase. We hypothesized that the oxyanion Q114, involved in substrate binding is also associated with modulation of conformational stability and in conferring specific enzyme attributes. The insilico investigations accurately predicted the quality of the protein packing in some of the variants. Our study found by altering the hydrophobicity of the oxyanion 114, remarkably altered enzyme conformational stability and catalytic attributes. Substitution with Leu resulted improvements in four out of the six tested characteristics. The hydrophobic Leu might have improved local structure folding and increased hydrophobic interactions with other residues in the vicinity of the mutation. The Met variant showed higher activity over the wild-type in hydrolyzing a wider range of natural oils. The bulky amino acids, Phe and Trp negatively affected T1 lipase and resulted in the largest disruption of protein stability and inferior enzyme characteristics. We have successfully illustrated that a single point residue changes at oxyanion 114 could result in a myriad of enzyme attributes, which implied there was some interplay between hydrophobicity and conformation for lipase catalytic functions. 展开更多
关键词 HYDROPHOBIC RESIDUE T1 Lipase OXYANION Conformational Stability CATALYTIC POCKET
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Preparation of Layered Double Hydroxide-Immobilized Lipase for High Yield and Optically Active (-)-Menthyl butyrate
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作者 Siti Salhah Othman Mahiran Basri +5 位作者 mohd.Zobir Hussein mohd basyaruddin abdul rahman Raja Noor Zaliha Raja abdul rahman Abu Bakar Salleh Salina Mat Radzi Azwani Sofia Ahmad Khiar 《复旦学报(自然科学版)》 CAS CSCD 北大核心 2007年第5期778-,共1页
1 Results Layered Double Hydroxide (LDH) finds extensive usage in the areas of pharmaceutical sciences and catalysis. In this study, a member of the LDH family, Mg/Al-hydrotalcite (HT), or the so-called anionic clay, ... 1 Results Layered Double Hydroxide (LDH) finds extensive usage in the areas of pharmaceutical sciences and catalysis. In this study, a member of the LDH family, Mg/Al-hydrotalcite (HT), or the so-called anionic clay, was prepared at ratio 4 (HT) by co-precipitating through continuous agitation. X-ray diffraction pattern and thermogravimetric analysis of the material indicated that a pure HT had been successfully synthesized. This matrix was then used as support in the immobilization of lipase from Cand... 展开更多
关键词 LDH-lipase HYDROTALCITE candida rugosa enantioselective esterification (±)-menthylbutyrate
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