Makhongela H S, Glowacka A E, Agarkar V B, Sewell B T, Weber B, Cameron R A, Cowan D A, Burton S G
Bioprocess Engineering Research Unit, Department of Chemical Engineering, University of Cape Town, Rondebosch, Cape Town, South Africa.
Appl Microbiol Biotechnol. 2007 Jun;75(4):801-11. doi: 10.1007/s00253-007-0883-2. Epub 2007 Mar 9.
An amidase (EC 3.5.1.4) in branch 2 of the nitrilase superfamily, from the thermophilic strain Geobacillus pallidus RAPc8, was produced at high expression levels (20 U/mg) in small-scale fermentations of Escherichia coli. The enzyme was purified to 90% homogeneity with specific activity of 1,800 U/mg in just two steps, namely, heat-treatment and gel permeation chromatography. Sodium dodecyl sulfate-polyacrylamide gel electrophoresis (SDS-PAGE) and electron microscopic (EM) analysis of the homogenous enzyme showed the native enzyme to be a homohexamer of 38 kDa subunits. Analysis of the biochemical properties of the amidase showed that the optimal temperature and pH for activity were 50 and 7.0 degrees C, respectively. The amidase exhibited high thermal stability at 50 and 60 degrees C, with half-lives greater than 5 h at both temperatures. At 70 and 80 degrees C, the half-life values were 43 and 10 min, respectively. The amidase catalyzed the hydrolysis of low molecular weight aliphatic amides, with D: -selectivity towards lactamide. Inhibition studies showed activation/inhibition data consistent with the presence of a catalytically active thiol group. Acyl transfer reactions were demonstrated with acetamide, propionamide, isobutyramide, and acrylamide as substrates and hydroxylamine as the acyl acceptor; the highest reaction rate being with isobutyramide. Immobilization by entrapment in polyacrylamide gels, covalent binding on Eupergit C beads at 4 degrees C and on Amberlite-XAD57 resulted in low protein binding and low activity, but immobilization on Eupergit C beads at 25 degrees C with cross-linking resulted in high protein binding yield and high immobilized specific activity (80% of non-immobilized activity). Characterization of Eupergit C-immobilized preparations showed that the optimum reaction temperature was unchanged, the pH range was somewhat broadened, and stability was enhanced giving half-lives of 52 min at 70 degrees C and 30 min at 80 degrees C. The amidase has potential for application under high temperature conditions as a biocatalyst for D: -selective amide hydrolysis producing enantiomerically pure carboxylic acids and for production of novel amides by acyl transfer.
来自嗜热菌株苍白芽孢杆菌RAPc8的腈水解酶超家族第2分支中的一种酰胺酶(EC 3.5.1.4),在大肠杆菌的小规模发酵中以高表达水平(20 U/mg)产生。该酶仅通过热处理和凝胶渗透色谱两步就被纯化至90%的纯度,比活性为1800 U/mg。对该纯酶进行的十二烷基硫酸钠 - 聚丙烯酰胺凝胶电泳(SDS - PAGE)和电子显微镜(EM)分析表明,天然酶是由38 kDa亚基组成的同型六聚体。对该酰胺酶的生化特性分析表明,其活性的最佳温度和pH分别为50℃和7.0。该酰胺酶在50℃和60℃下表现出高热稳定性,在这两个温度下的半衰期均大于5小时。在70℃和80℃时,半衰期分别为43分钟和10分钟。该酰胺酶催化低分子量脂肪族酰胺的水解,对乳酰胺具有D - 选择性。抑制研究表明,活化/抑制数据与催化活性巯基的存在一致。以乙酰胺、丙酰胺、异丁酰胺和丙烯酰胺为底物,羟胺为酰基受体,证明了酰基转移反应;以异丁酰胺时反应速率最高。通过包埋在聚丙烯酰胺凝胶中、在4℃下共价结合到Eupergit C珠粒上以及在Amberlite - XAD57上进行固定化,导致蛋白质结合率低且活性低,但在25℃下通过交联固定在Eupergit C珠粒上则导致高蛋白质结合产率和高固定化比活性(非固定化活性的80%)。对固定在Eupergit C上的制剂的表征表明,最佳反应温度不变,pH范围有所拓宽,稳定性增强,在70℃下的半衰期为52分钟,在80℃下为30分钟。该酰胺酶有潜力在高温条件下作为生物催化剂用于D - 选择性酰胺水解以生产对映体纯的羧酸,以及通过酰基转移生产新型酰胺。