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1.
应用混合菌系实现右旋磷霉素手性生物转化的初步研究   总被引:1,自引:0,他引:1  
探索了一条通过混合菌系把右旋磷霉素转化为左旋磷霉素的生物转化新途径。采用"右旋磷霉素利用菌"和"左旋磷霉素抗性菌"两种筛选模型,从某制药厂土壤中筛选到了7株右旋磷霉素利用菌和6株左旋磷霉素抗性菌。将上述13株菌混合接种到以0.5%右旋磷霉素为唯一碳源的无机盐培养基中,30℃、150r/min培养3~5d,经磷霉素敏感菌生物检测、薄层层析(TLC)检测,初步确证了转化产物中存在左旋磷霉素。对右旋磷霉素的手性生物转化条件进行了初步探索,发现接种时带入少量肉汤培养基对转化有促进作用,而微量元素Co~(2-)和VO_3~-对转化没有促进作用。为在磷霉素生产中减少资源浪费和提高产量提供了理论依据。  相似文献   

2.
以海藻酸钠、羧甲基纤维素钠(CMC)为载体,分别以乙二醇缩水甘油醚(EGDE)和戊二醛为交联剂,采用包埋交联法对脂肪酶进行固定化,结果显示EGDE的交联效果要优于戊二醛,添加EGDE的固定化酶酶活最好。得到制备固定化酶的最优方案为海藻酸钠2.5%,CMC浓度1.5%,给酶量800U/ml复配载体,氯化钙5%,以0.02%的EGDE交联固定30min,由此制备得到酶活约为380 U/g的固定化酶,酶活收率约为50.09%。固定化酶的最适反应p H为8.5,比游离酶增大0.5个单位;最适反应温度是45℃,比游离酶提高5℃;耐热性能变好,且重复使用7次后仍能保持60%左右的相对酶酶活。  相似文献   

3.
建立以右旋磷霉素为底物生物转化产生左旋磷霉素的检测方法。通过考察藤黄微球菌与大肠埃希菌对左旋磷霉素的最小抑菌浓度,确定检定菌种类;优化薄层色谱展开剂系统,将薄层色谱与生物显影相结合对转化产物进行定性;利用含量标准曲线,使用生物活性检测法对转化产物进行定量。藤黄微球菌对左旋磷霉素的最小抑菌浓度比大肠埃希菌小100倍,因此作为本实验的检定菌;薄层色谱的最佳展开剂确定为正丁醇/甲醇/水(4∶3∶2,体积比),此时左旋磷霉素在生物检定板上呈现边缘清晰的抑菌圈,且Rf值为0.51;在1.43~5.0 mg/mL范围内,抑菌圈直径与磷霉素浓度的对数值成正比。以藤黄微球菌作为检定菌,不需要对转化产物进行分离纯化和精制,可利用薄层色谱与生物显影相结合的方法对产物进行定性,利用生物活性检测法对产物进行定量,达到简便快速地对转化产物进行定性和定量的目的。  相似文献   

4.
海藻酸钠包埋法制备固定化菠萝蛋白酶   总被引:1,自引:0,他引:1  
以海藻酸钠为载体,包埋法固定菠萝蛋白酶,对固定化奈件进行优化,同时探讨固定化菠萝蛋白酶的部分酶学性能。结果表明:固定化菠萝蛋白酶的质量受海藻酸钠质量分数、固定化酶量、固定化时间以及CaCl2质量分数的影响,其最佳固定化条件为:海藻酸钠质量分数1.0%,CaCl2质量分数3%,固定化酶液量与海藻酸钠体积之比1:2,固定化时间60min,在此条件下,制备的固定化菠萝蛋白酶的比活力为211.8U/g(湿质量载体),由此制得的固定化酶的最适pH为7.6,与游离酶相比,升高了0.8个pH单位,同时显示固定化菠萝蛋白酶能耐受较高的碱性环境,固定化酶最适温度与游离酶相同,均为50℃,固定化酶在较高温度范围内,仍能保持较高的相对活力。  相似文献   

5.
d-阿洛酮糖3-差向异构酶 (d-allulose-3-epimerase) 是异构化d-果糖生成d-阿洛酮糖 (d-allulose) 的关键酶。为提高d-阿洛酮糖3-差向异构酶的热稳定性并获得可重复使用的d-阿洛酮糖3-差向异构酶重组枯草芽孢杆菌固定化细胞,N端融合双亲短肽,通过聚丙烯酰胺凝胶电泳 (SDS-PAGE) 分析,异源d-阿洛酮糖3-差向异构酶在枯草芽孢杆菌中正确折叠,蛋白大小为33 kDa。40 ℃孵育48 h,SAP1-DSDPEase残余酶活仍保持在58%。固定化细胞最优条件为海藻酸钠浓度2%、二氧化钛添加量1︰4 (二氧化钛︰海藻酸钠)、氯化钙溶液浓度2%、戊二醛0.02%作为交联剂。该条件下固定化细胞酶活回收率高达82%,固定化细胞与游离细胞相比,最适反应温度不变均为80 ℃,热稳定性提高,连续10次操作使用,酶活回收率仍保留58%,机械强度仍保持100%,转化率仍保持在28.8%,残余酶活保持在70.5%。在海藻酸钠溶液中加入二氧化钛可减少固定化细胞的细胞泄露,增大了机械强度。  相似文献   

6.
包埋法固定化真菌漆酶及其应用研究   总被引:1,自引:0,他引:1  
采用海藻酸钠包埋法固定真菌漆酶,海藻酸钠和CaCl2的最佳浓度分别为3%和4%,最佳给酶量为30U,最大回收率为48.0%.与游离漆酶相比,固定化漆酶的热稳定性有明显改善,最适反应pH向酸性方向漂移0.5,最适反应温度提高了5℃.使用固定化酶处理低浓度造纸废水,运行8批次后残留酶活为64%.  相似文献   

7.
将来源于Clostridium cellulolyticum H10的DPEase基因在食品级表达系统Bacillus subtilis中进行产酶研究,在3L发酵罐中高密度发酵最终酶活可达495U/ml,得到高表达量的DPEase酶液。通过硅藻土-海藻酸钠(吸附包埋法)对重组细胞进行固定化研究,结果表明,当海藻酸钠浓度为2%、细胞包埋量为50g/L、CaCl_2浓度为2%、硅藻土浓度为1%时,固定化细胞酶活回收率可达64%,固定化细胞与游离细胞相比最适pH不变,最适温度提高5℃,热稳定性明显提高,连续反应7个批次后转化率仍然为28%,仍保持81%的残余酶活,具有很高的工业应用价值。  相似文献   

8.
右旋磷霉素生物转化菌株的筛选和鉴定   总被引:1,自引:0,他引:1  
以右旋磷霉素为唯一碳源进行固体初筛和液体复筛,获得生物转化能力较强的32株菌;再以杀卤虫模型筛选具有杀虫活性物质的菌株,得到一株具有较强杀虫活性的真菌FM94,通过对该菌的形态特征观察及ITS序列分析,鉴定为腾仓赤霉(Gibberella fujikuroi);初步考察其生物转化条件,结果表明在以右旋磷霉素为唯一碳源,初始pH值为3.5,转化培养第4d时转化产物杀卤虫活性最高。  相似文献   

9.
比较了以海藻酸钠为载体,用胶囊法、包埋-交联法、交联-包埋法三种不同方法固定化黑曲霉β-葡萄糖苷酶的效果,并研究了最佳固定化方法的固定化条件和固定化酶的部分性质。结果表明,交联-包埋法即β-葡萄糖苷酶与0.20%戊二醛交联后再用2.0%海藻酸钠包埋的固定化方法中酶结合效率和酶活力回收率最高。海藻酸钠浓度和戊二醛浓度对酶结合效率影响较大,戊二醛浓度和包埋颗粒直径大小对酶活力回收率影响显著。与游离酶相比,制备的固定化酶最适温度、最适pH值和Km值分别由50℃、4.5和2.57μg/mL下降到40℃、4.0和2.02μg/mL。固定化酶具有更强的耐酸性和稳定性。该固定化酶用于大豆异黄酮活性苷元染料木素的合成,重复使用6次后,固定化酶的活力仍保持84.94%,染料木苷转化率为56.04%。  相似文献   

10.
分别采用海藻酸钠、明胶和壳聚糖为载体,并以戊二醛为交联剂,通过包埋-交联和吸附-交联两种耦合固定化方法制备固定化锰过氧化物酶。探讨了酶的不同固定化条件和固定化酶的部分性能。与游离酶相比,制备的3种固定化酶最适反应pH分别由7.0降低到5.0、5.0和3.0,最适反应温度分别由35℃升高到75℃、55℃和75℃。3种固定化酶的耐热性都显著提高,其中用壳聚糖制成的固定化酶在pH 2.2~11的宽范围内表现出很好的酸碱耐受性。30℃连续测定6~9次酶活力,重复使用的3种固定化酶显示出良好的稳定性。将固定化酶应用在偶氮染料的脱色中,用明胶制成的固定化酶在静置和摇床条件下,以及用海藻酸钠制成的固定化酶在摇床条件下,均表现出与游离酶相近的脱色能力,并且在重复进行的摇床实验中,脱色能力未降低,反应前后的酶活力均没有损失。  相似文献   

11.
The extracellular enzyme alginate lyase produced from marine fungus Aspergillus oryzae isolated from brown alga Dictyota dichotoma was purified, partially characterized, and evaluated for its sodium alginate depolymerization abilities. The enzyme characterization studies have revealed that alginate lyase consisted of two polypeptides with about 45 and 50 kDa each on 10% sodium dodecyl sulfate polyacrylamide gel electrophoresis and showed 140-fold higher activity than crude enzyme under optimized pH (6.5) and temperature (35°C) conditions. Zn2+, Mn2+, Cu2+, Mg2+, Co2+ and NaCl were found to enhance the enzyme activity while (Ca2+, Cd2+, Fe2+, Hg2+, Sr2+, Ni2+), glutathione, and metal chelators (ethylenediaminetetraacetic acid and ethylene glycol tetraacetic acid) suppressed the activity. Fourier transform infrared and thin-layer chromatography analysis of depolymerized sodium alginate indicated the enzyme specificity for cleaving at the β-1,4 glycosidic bond between polyM and polyG blocks of sodium alginate and therefore resulted in estimation of relatively higher polyM content than polyG. Comparison of chemical shifts in 13C nuclear magnetic resonance spectra of both polyM and polyG from that of sodium alginate also showed further evidence for enzymatic depolymerization of sodium alginate.  相似文献   

12.
研究了基因工程菌BL21/pET22b-argE固定化条件。最适包埋材料为海藻酸钙,优化后的包埋条件为海藻酸钠20g.L-1(含有12 g.L-1菌液)滴至2%CaCl2溶液中,固定化16 h。固定化细胞酶拆分蛋氨酸的速率比游离细胞酶慢,但其终极拆分能力与游离细胞酶相当。固定化细胞酶反复利用8批时酶活仍保持在95%以上,具有很好的工业应用优势。  相似文献   

13.
为了提高类芽胞杆菌新种HB172198产褐藻胶裂解酶活力,本研究采用响应面法对该菌株液体发酵培养基进行了优化实验。在单因素实验和Plackett-Burman试验筛选出海藻酸钠、胰蛋白胨、NaCl、MgSO4·7H2O等4个显著影响产酶因素的基础上,通过Box-Behnken设计及响应面法进行回归分析,得出产褐藻胶裂解酶最佳发酵培养基,其成分为:海藻酸钠7.50 g/L、胰蛋白胨13.57 g/L、NaCl 29.75 g/L、MgSO4·7H2O 0.08 g/L。优化条件下该菌株最大酶活性达14.60 U/mL,是优化前的1.87倍。本研究为菌株HB172198产褐藻胶裂解酶的大规模生产和工业应用提供了重要的理论依据。  相似文献   

14.
Streptomyces griseoloalbus was immobilized in calcium alginate gel and the optimal immobilization parameters (concentrations of sodium alginate and calcium chloride, initial biomass and curing time) for the enhanced production of alpha-galactosidase were determined. The immobilization was most effective with 3% sodium alginate and 0.1M calcium chloride. The optimal initial biomass for immobilization was approximately 2.2g (wet wt.). The alginate-entrapped cells were advantageous because there was a twofold increase in the enzyme yield (55 U/ml) compared to the highest yield obtained with free cells (23.6 U/ml). Moreover, with immobilized cells the maximum yield was reached after 72 h of incubation in batch fermentation under optimal conditions, whereas in the case of free cells the maximum enzyme yield was obtained only after 96 h of incubation. The alginate beads had good stability and also retained 75% ability of enzyme production even after eight cycles of repeated batch fermentation. It is significant that this is the first report on whole-cell immobilization for alpha-galactosidase production.  相似文献   

15.
Bacillus subtilis TD6 was isolated from Takifugu rubripes, also known as puffer fish. Cellulase from this strain was partially purified by ammonium sulphate precipitation up to 80% saturation, entrapped in calcium alginate beads, and finally characterized using CMC as the substrate. For optimization, various parameters were observed, including pH maximum, temperature maximum, sodium alginate, and calcium chloride concentration. pH maximum of the enzyme showed no changes before and after immobilization and remained stable at 6.0. The temperature maximum showed a slight increase to 60 °C. Two percent sodium alginate and a 0.15 M calcium chloride solution were the optimum conditions for acquisition of enzyme with greater stability. K (m) and V (max) values for the immobilized enzyme were slightly increased, compared with those of free enzyme, 2.9 mg/ml and 32.1 μmol/min/mL, respectively. As the purpose of immobilization, reusability and storage stability of the enzyme were also observed. Immobilized enzyme retained its activity for a longer period of time and can be reused up to four times. The storage stability of entrapped cellulase at 4 °C was found to be up to 12 days, while at 30 °C, the enzyme lost its activity within 3 days.  相似文献   

16.
曹文娟  袁海生 《菌物学报》2016,35(3):343-354
采用壳聚糖交联法和海藻酸钠-壳聚糖包埋交联法固定化桦褶孔菌产生的漆酶,探讨最佳固定化条件,固定化漆酶的温度,pH稳定性及操作稳定性,并以两种固定化酶分别对4种染料进行了降解.结果表明:(1)壳聚糖交联法固定化漆酶的最佳条件为:壳聚糖2.5%,戊二醛7%,交联时间2h,固定化时间5h,给酶量1g壳聚糖小球:1mL酶液(1U/mL),固定化效率56%;(2)海藻酸钠-壳聚糖包埋交联法固定化漆酶的最佳条件为:海藻酸钠浓度4%,壳聚糖浓度0.7%,氯化钙浓度5%,戊二醛浓度0.6%,给酶量4mL 4%海藻酸钠:1mL酶液(1U/mL),固定化效率高达86%;(3)固定化的漆酶相比游离漆酶有更好的温度和pH稳定性;(4)比较两种固定化漆酶,海藻酸钠-壳聚糖包埋交联法固定化酶的温度及酸度稳定性要优于壳聚糖固定化酶,但可重复操作性要弱于后者,两者重复使用8次后的剩余酶活比率分别为71%及64%;(5)两种固定化酶对所选的4种不同结构的合成染料均有较好的降解效果,其中壳聚糖固定化酶对茜素红的降解效果及重复使用性极佳,重复降解40mg/L的茜素红10次,降解率仍保持在100%.  相似文献   

17.
Enzymatic degradation of alginate by marine fungi   总被引:4,自引:0,他引:4  
Schaumann  K.  Weide  G. 《Hydrobiologia》1990,(1):589-596
A total of 72 pre-selected strains of 19 species of marine fungi were tested for their ability to decompose sodium alginate, calcium alginate or freshly prepared calcium alginate gel. Active alginate decomposition was evident in 18 strains (25% of total tested). These belong to only three different species: Asteromyces cruciatus, Corollospora intermedia, and Dendryphiella salina. In broth culture, decomposition of sodium alginate by the two deuteromycetes was followed by gravimetric, electrometric, viscometric, photometric and chromatographic methods in order to characterize the alginase enzyme system and its degradation products. The alginase enzyme complex consisted of at least two different enzyme components: the already known alginate lyase (eliminase) and a new endo-alginate hydrolase. In summary, a model is presented on the alginase-mediated structural and molecular decomposition of sodium alginate by marine fungi.  相似文献   

18.
利用四乙氧基硅烷(TEOS)原位水解法将SiO2掺杂于海藻酸(ALG)凝胶中,通过双交联制备出新型ALG—SiO2杂化凝胶以固定化洋葱伯克霍尔德菌脂肪酶。结果表明,固定化酶的最优条件:质量分数为2.0%的ALG、0.2mol/LCaCl2、V(ALG)/V(TEOS)为5、加酶量为1gALG加100mg酶粉、固定化60min、采用直径为0.8mm的针头滴定、真空冷冻干燥。在此条件下,酶蛋白的包埋率可达100%,酶活回收率可达91%。固定化酶的最适pH为8.0,最适作用温度为50℃,重复使用8次后,酶活性仍能保持80%以上。ALG—Si02杂化凝胶的场扫描电镜(FESEM)观察发现凝胶的整体构造仍然是海藻酸凝胶骨架;与ALG凝胶平滑的内部相比较,杂化凝胶仍具有完整的网络结构,但内部更为粗糙,结构更为致密。  相似文献   

19.
为了提高褐藻胶降解菌株Cobetia sp.20产褐藻胶裂解酶的能力,利用响应面法优化其发酵产褐藻胶裂解酶的培养基。首先利用单因素法分别对发酵培养基中的不同碳源、碳源添加量、不同氮源、氮源添加量以及氯化钠添加量、磷酸二氢钾添加量、硫酸镁添加量和pH进行探究,研究各因素对产酶的影响。在单因素实验的基础上,通过Plackett-Burman试验确定Cobetia sp.20发酵培养基中影响产酶的主要因素。通过响应面试验建立回归方程。研究结果表明,Cobetia sp.20最优发酵培养基配方为褐藻胶15.00 g/L、硫酸铵7.50 g/L、氯化钠15.00 g/L、硫酸镁0.50 g/L、磷酸二氢钾5.30 g/L、硫酸亚铁0.01 g/L、pH值7.58。优化后酶活为142.79 U/mL,比优化前提高了26.36%。褐藻胶裂解酶活的提高,为褐藻胶裂解酶的工业化生产提供了参考。  相似文献   

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