首页> 外文期刊>Scientific reports. >Significant improvement in catalytic activity and enantioselectivity of a Phaseolus vulgaris epoxide hydrolase, PvEH3, towards ortho-cresyl glycidyl ether based on the semi-rational design
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Significant improvement in catalytic activity and enantioselectivity of a Phaseolus vulgaris epoxide hydrolase, PvEH3, towards ortho-cresyl glycidyl ether based on the semi-rational design

机译:基于半理性设计,PVESOLUSUSUSUSUSUSUSSUSUS环氧化物水解酶,PVEH3的催化活性和对酶切除性的显着改善

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The investigation of substrate spectrum towards five racemic (rac-) aryl glycidyl ethers (1a-5a) indicated that E. coli/pveh3, an E. coli BL21(DE3) transformant harboring a PvEH3-encoding gene pveh3, showed the highest EH activity and enantiomeric ratio (E) towards rac-3a. For efficiently catalyzing the kinetic resolution of rac-3a, the activity and E value of PvEH3 were further improved by site-directed mutagenesis of selected residues. Based on the semi-rational design of an NC-loop in PvEH3, four single-site variants of pveh3 were amplified by PCR, and intracellularly expressed in E. coli BL21(DE3), respectively. E. coli/pveh3supE134K/sup and /pveh3supT137P/sup had the enhanced EH activities of 15.3 ± 0.4 and 16.1 ± 0.5 U/g wet cell as well as E values of 21.7 ± 1.0 and 21.2 ± 1.1 towards rac-3a. Subsequently, E. coli/pveh3supE134K/T137P/sup harboring a double-site variant gene was also constructed, having the highest EH activity of 22.4 ± 0.6 U/g wet cell and E value of 24.1 ± 1.2. The specific activity of the purified PvEH3supE134K/T137P/sup (14.5 ± 0.5 U/mg protein) towards rac-3a and its catalytic efficiency (ksubcat/sub/Ksubm/sub of 5.67?mMsup-1/sup ssup-1/sup) for (S)-3a were 1.7- and 3.54-fold those (8.4 ± 0.3 U/mg and 1.60?mMsup-1/sup ssup-1/sup) of PvEH3. The gram-scale kinetic resolution of rac-3a using whole wet cells of E. coli/pveh3supE134K/T137P/sup was performed at 20?°C for 7.0?h, producing (R)-3a with 99.4% eesubs/sub and 38.5 ± 1.2% yield. Additionally, the mechanism of PvEH3supE134K/T137P/sup with remarkably improved E value was analyzed by molecular docking simulation.
机译:对五种外消旋(RAC-)芳基缩水甘油醚(1A-5A)进行底物光谱的研究表明,E.COLI / PVEH3,含PVEH3编码基因PVEH3的大肠杆菌BL21(DE3)转化体显示出最高的EH活性对Rac-3a的对映重量(e)。为了有效地催化RAC-3a的动力分辨率,通过选定残留物的点定向诱变进一步改善PVEH3的活性和e值。基于PVEH3中NC环的半合理设计,通过PCR分别通过PVEH3的四个单点变体,分别在大肠杆菌BL21(DE3)中细胞内表达。大肠杆菌/ PVEH3 E134K 和/ PVEH3 T137P 具有增强的EH活性为15.3±0.4和16.1±0.5 U / G湿细胞以及21.7±0.7°的e值1.0和21.2±1.1朝着RAC-3a。随后,还构建了含有双位点变体基因的大肠杆菌/ PVEH3 E134K / T137P ,具有22.4±0.6u / g湿电池的最高eh活性和24.1±1.2的e。纯化的PVEH3 E134K / T137P / SOP>(14.5±0.5u / mg蛋白)对RAC-3A的比活性及其催化效率(K CAT / K M (s)-3a的5.67Ω·mm -1 / sup> s -1 )为1.7-和3.54倍(8.4±0.3u / mg和1.60?mm -1 s -1 )pveh3。使用大肠杆菌/ PVEH3 E134K / T137P 的全湿细胞的RAC-3a的克尺寸动力学分辨率在20℃下进行7.0℃,产生(r)-3a,99.4 %EE s 和38.5±1.2%收率。另外,通过分子对接模拟分析了PVEH3 E134K / T137P 具有显着改善的E值的机制。

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