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1.
巨大芽孢杆菌青霉素G酰化酶基因在枯草杆菌中的高表达   总被引:9,自引:2,他引:9  
用PCR方法从巨大芽孢杆菌的基因组DNA中扩增到青霉素G酰化酶基因,并装载到枯草杆菌质粒pPZW103中,将其转化到枯草杆菌DB104中进行了分泌表达,重组菌株产酶无需苯乙酸诱导。在37℃培养24h,菌液酶活力可达6u/ml。10天的连续传代实验表明重组菌株的稳定性很高。  相似文献   

2.
巨大芽孢杆菌BP931胞外青霉素G酰化酶的产生条件   总被引:3,自引:2,他引:1  
研究了巨大芽孢杆菌(Bacillus megaterium)BP 931胞外青霉素G酰化酶的产生条件。菌在由葡萄糖0.7%,氮源1号0.5%,酵母膏1.0%和苯乙酸0.8%组成的液体培养基(灭菌前pH9.0,灭菌后pH8.0)中,28℃振荡培养44h。以6-硝基-3-苯乙酰胺基苯甲酸为底物,培养滤液酶活力为9.0IU/ml。诱导物苯乙酸于培养6h后加入,酶活力可以提高到11.0IU/ml。Ca2+、Al3+、Sn3+、Mn2+和Fe2+离子降低酶的形成;Cu+和C02+离子显著抑制菌生长,降低酶的形成;Zn2+,Cd2+和Hg2+离子完全抑制菌生长和酶形成。  相似文献   

3.
4.
以聚丙烯腈纤维为载体制备固定化青霉素G酰化酶的研究   总被引:6,自引:0,他引:6  
以酸部分水解聚丙烯腈纤维为载体 ,以戊二醛为交联剂 ,共价键结合制备了固定化胞外青霉素G酰化酶。当水解后的载体中 NH2 基含量为 690 μmol g和含水量为 64%时 ,对酶蛋白的固定量达 1 0 0mg g以上 ,固定化酶的活力达 2 30 0IU g ,酶活力总产率为 30 % ,固定化效率为 56%。酶活力的总产率和固定化率随加酶量的增加而降低。该酶可以将浓度为 2 5%~1 2 5%的青霉素G钾盐水解 98%以上。批投青霉素G钾盐为 1 0g,酶负荷为 1 50IU g(PGK) ,经2 0批水解反应后 ,剩余酶活力为 80 %。用二硫基苏醣醇处理固定化酶 ,对水解青霉素G钾盐的操作稳定性有促进作用。固定化酶的室温保存半衰期为 1 30d。用戊二醛和硼氢化钠溶液处理固定化酶后 ,酶活力的室温保存稳定性有所降低。  相似文献   

5.
为了提高青霉素G酰化酶(PGA)在酸性及有机溶剂中的稳定性,以大肠杆菌的晶体结构为模板,用软件PMODELING同源模建巨大芽孢杆菌青霉素G酰化酶的三维结构结构并且选择PGA分子表面的合适碱性氨基酸突变为丙氨酸,通过三种不同的快速PCR介导定位突变的方法,将位于PGA的α亚基21位、128位和β亚基492位、512位的赖氨酸残基分别突变为丙氨酸,获得四个突变酶Kα021A、Kα128A、Kβ492A和Kβ512A。其中Kα128A和Kβ512A保持与野生型相近的酶活力,其动力学性质如最适温度、最适pH,Km及Kcat没有明显变化;突变酶Kα021A和Kβ492A则丧失 了酶活力。上述结果表明,PGA分子表面非活性中心的赖氨酸→丙氨酸点突变使突变子的性状发生了分化,突变效应呈现出丰富的多样性。该有理设计不但可以提高酶的稳定性,而且为揭示PGA结构和功能的关系提供了一个新的研究模型。  相似文献   

6.
巨大芽孢杆菌青霉素G酰化酶基因的克隆和表达   总被引:3,自引:0,他引:3  
我们分离到了一株产生分泌型青霉素G酰化酶的巨大芽孢杆菌(Bacillus megateriumBM1)。用pBR322作载体,将该菌的青霉索G酰化酶基因克隆到大肠杆菌(Escherichia coliMcl061)中,得到含有9.9kb插人片段的重组质粒pBmPA4。分析了该质粒的限制酶酶切图谱,并经体外缺失获得含4.9kb插入片段的质粒pBmPA5。pBmPA4和pBmPA5在E·coliMcl061中均能表达,表达受苯乙酸诱导。  相似文献   

7.
颗粒状固定化青霉素酰化酶的研究   总被引:10,自引:0,他引:10  
韩辉  徐冠珠 《微生物学报》2001,41(2):204-208
将巨大芽孢杆菌 (Bacillusmegaterium)胞外青霉素酰化酶通过共价键结合到聚合物载体EupergitC颗粒环氧基团上 ,制成的颗粒状固定化青霉素酰化酶表现活力达 1 40 0 μ/g左右。固定化酶水解青霉素的最适 pH8 0 ,最适温度为 55℃。在pH6 0~ 8 5、温度低于 40℃时固定化酶活力稳定。在 pH8 0、温度 37℃时 ,固定化酶对青霉素的表现米氏常数Ka为 2×1 0 - 2 mol/L ;苯乙酸为竞争性抑制剂 ,抑制常数Kip为 2 8× 1 0 - 2 mol/L ;6 APA为非竞争性抑制剂 ,抑制常数Kia为 0 1 2 5mol/L。固定化酶水解青霉素 ,投料浓度为 8% ,在使用 2 0 0批后 ,保留活力 80 %左右 ,6 APA收率平均达 89 48%。  相似文献   

8.
从巨大芽孢杆菌CA4098的基因组中,通过PCR方法扩增青霉素酰化酶(pga)基因,克隆到pKK223-3质粒中,在E.coliHB101中得到表达。同时,测定了pga基因的全部序列,推出氨基酸序列,再与不同菌种来源的青霉素酰化酶的氨基酸序列进行比较,表明它们的序列有一定的保守性,尤其是活性部位的保守性更强。  相似文献   

9.
重组青霉素G酰化酶在枯草芽孢杆菌中的表达条件优化   总被引:2,自引:0,他引:2  
 为获得巨大芽孢杆菌青霉素 G酰化酶 (PGA)的高产菌株和条件 ,构建了分泌表达 PGA的基因工程枯草杆菌菌株 ,对表达条件进行了优化 .以 LB作为初始培养基 ,考察了温度、苯乙酸、装液量、碳源对于工程菌 PGA产量的影响 .实验发现重组细胞产酶不再需要变温和苯乙酸诱导 .充足的通气量和适当浓度的淀粉可使细胞密度及 PGA表达量大为提高 .表达条件优化后 ,菌体 A60 0由 3提高到 2 0 ,PGA的表达量由 3~ 6U/ml提高到 35~ 40 U/ml,为目前生产用巨大芽孢杆菌表达量的 6倍 .  相似文献   

10.
聚丙烯腈纤维固定化青霉素酰化酶合成头孢氨苄的研究   总被引:4,自引:0,他引:4  
将巨大芽孢杆菌胞外青霉素酰化酶通过共价键结合到聚丙烯腈纤维的衍生物上。制成的丝状固定化青霉素酰化酶表现活力达 1 5 3U g(湿重 )。固定化酶合成头孢氨苄的最适pH为 6 5 ,最适温度为 40℃。 7 ADCA的投料浓度以 4%为好 ,7 ADCA与PGME的投料量比率为1∶2 ,最佳用酶量为 1 70U g 7 ADCA。在pH6 5、温度 3 0℃时 ,固定化酶对 7 ADCA的表观米氏常数K7 ADCA为 0 1 6 2mol L ,对PGME的表观米氏常数KPGME为 0 3 6 4mol L ,最大反应速度Vmax为0 0 4 6 2mol·L- 1·min- 1,用固定化酶合成头孢氨苄 ,使用 5 0次保留酶活力 83 9%  相似文献   

11.
A procedure is described for the immobilization of penicillin G acylase (PA) on Amberlite XAD7 modified by transamidation with 1,2-ethylenediamine and activated with glutaraldehyde. Reduction with sodium borohydride of the Schiff's bases formed between the amino groups of the protein and glutaraldehyde results in a dramatic improvement of the operational stability of the immobilized enzyme without affecting the catalytic activity. The enzyme kept in presence of the substrate, penicillin G, displays an increased stability with respect to that stored in pure phosphate buffer solution. The inactivation kinetics of the immobilized preparations of PA, determined in a continuous fixed bed reactor, as well as a discontinuous batch reactor, are reported.  相似文献   

12.
Aiming at to enhance the production of penicillin G acylase (PGA) by Bacillus megaterium, we have performed flasks experiments using different medium composition. Using 51 g/L of casein hydrolyzed with Alcalase and 2.7 g/L of phenylacetic acid (PhAc), the following carbon substrates were tested, individually and combined: glucose, glycerol, and lactose (present in cheese whey). Glycerol and glucose showed to be effective nutrients for the microorganism growth but delayed the PGA production. Cheese whey always increased enzyme production and cell mass. However, lactose (present in cheese whey) was not a significant carbon source for B. megaterium. PhAc, amino acids, and small peptides present in the hydrolyzed casein were the actual carbon sources for enzyme production. Replacement of hydrolyzed casein by free amino acids, 10.0 g/L, led to a significant increase in enzyme production (app. 150%), with a preferential consumption of alanine, aspartic acid, glycine, serine, arginine, threonine, lysine, and glutamic acid. A decrease of the enzyme production was observed when 20.0 g/L of amino acids were used. Using the single omission technique, it was shown that none of the 18 tested amino acids was essential for enzyme production. The use of a medium containing eight of the preferentially consumed amino acids lead to similar enzyme production level obtained when using 18 amino acids. PhAc, up to 2.7 g/L, did not inhibit enzyme production, even if added at the beginning of the cultivation.  相似文献   

13.
Zhao J  Wang Y  Luo G  Zhu S 《Bioresource technology》2011,102(2):529-535
In this study, macro-mesoporous silica spheres were prepared with a micro-device and used as the support for the immobilization of penicillin G acylase (PGA). To measure the enzymatic activity, the silica spheres with immobilized PGA were placed into a packed-bed reactor, in which the hydrolysis of penicillin G was carried out. The influences of the residence time, the initial concentration of the substrate, the accumulation of the target product 6-aminopenicillanic acid, and the enzyme loading amount on the performance of the immobilized PGA were investigated. The introduction of macropores increased the enzyme loading amount and decreased the internal mass transfer resistance, and the results showed that the enzyme loading amount reached 895 mg/g (dry support), and the apparent enzymatic activity achieved up to 1033 U/g (dry support). In addition, the immobilized PGA was found to have great stability.  相似文献   

14.
Phenylacetic acid, as inhibitory product, was formed from a hydrolysis of penicillin G by immobilized penicillin acylase. In this article, electrodialysis was applied to remove phenylacetic acid continuously from the reaction mixture and to enhance an efficiency of the reaction. When 268 and 537 mM of penicillin G solution were used as the substrate, the concentration of phenylacetic acid in the reaction mixture could be maintained at less than 81 and 126 mM, respectively, and eventually, 86% and 88% of phenylacetic acid produced were removed from the reaction mixture at the end of the hydrolysis, respectively. Times required to reach 96% and 94.8% conversion from 268 and 537 mM of initial penicillin G could be reduced to 65% and 64% respectively, by means of electrodialysis; while 3.0% and 4.3% of initial penicillin G of 268 and 537 mM were permeated out of the reaction chamber during the hydrolysis, respectively. However, a loss of penicillin G by permeation could be reduced from 4.3% to 3.4% by a repeated addition of penicillin G.  相似文献   

15.
AIMS: Optimization of 6-aminopenicillanic acid (6-APA) production using cross-linked enzyme aggregates (CLEA) of Bacillus badius penicillin G acylase (PAC). METHODS AND RESULTS: CLEA-PAC was prepared using purified/partially purified PAC with phenylacetic acid as active-site blocking agent and glutaraldehyde as cross-linker. Conversion of penicillin G to 6-APA by CLEA-PAC was optimized using response surface methodology (RSM) (central composite rotatable design) consisting of a three-factor-two-level pattern with 20 experimental runs. CONCLUSION: Nearly, 80% of immobilization yield was obtained when partially purified enzyme was used for the preparation of CLEA-PAC. Quantitative conversion of penicillin G to 6-APA was observed within 60 min and the CLEA-PAC was reusable for 20 repeated cycles with 100% retention of enzyme activity. SIGNIFICANCE AND IMPACT OF THE STUDY: The faster conversion of penicillin G to 6-APA by CLEA-PAC and efficient reusability holds a strong potential for the industrial application.  相似文献   

16.
A rapid, continuous, colorimetric enzyme assay for penicillin G acylase has been developed. The assay measures the formation of the acidic products of penicillin G hydrolysis by following the decrease in pH using Phenol Red as an indicator. The activity measured is directly proportional to the amount of enzyme added to the assay, having a linear relationship with an R 2 value of 0.9994.  相似文献   

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