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1.
目的:在乳酸乳球菌中重组表达乙醛脱氢酶(ALDH)。方法:合成毕赤酵母ALDH基因,PCR扩增后通过重组构建pNZ8048-ALDH表达载体,电转至乳酸乳球菌NZ9000感受态,Nisin诱导表达后经Ni柱亲和层析纯化ALDH蛋白,比色法测定酶活。结果:构建了pNZ8048-ALDH表达载体,在乳酸乳球菌NZ9000中实现了ALDH的重组表达,目的蛋白占全菌蛋白的17.2%,其中可溶性表达比例为53%,重组菌株ALDH活力为0.638 U/mL,亲和层析纯化蛋白纯度约70%,比活为0.48 U/mg。结论:在乳酸乳球菌中表达并纯化获得了有活性的ALDH。  相似文献   

2.
应用RT-PCR方法,扩增人VEGF121 cDNA基因片段,与酵母表达载体pPIC9K重组,获得表达质粒p9KVEGF121.该质粒转化毕赤酵母菌GS115,用G418-YPD平板筛选高拷贝转化子,PCR鉴定VEGF121 cDNA与酵母染色体整合状态,高拷贝转化子用甲醇诱导表达.工程菌用5 L发酵罐发酵,表达产物r-hVEGF121占培养液中总蛋白量70%以上.纯化产物促进牛毛细血管内皮(BCE)细胞增殖,并强烈促进血管通透.  相似文献   

3.
米曲霉原生质体融合及杂合二倍体的形成   总被引:19,自引:1,他引:18  
辛明秀  蒋亚平   《微生物学通报》1994,21(3):143-148
采用混合酶液处理纤维素酶高产苗株3042N-2(天冬酰胺缺陷型“Asn”)及蛋白酶高产菌株3042N-19(蛋氨酸缺陷型“Met”)的营养菌丝,获得原生质体,以PEG为助融剂进行融合处理,成功地获得了米曲霉(Aspergillusoryzae)原生质体的营养互补融合。将异核体菌落的菌丝转接到合有0.1%樟脑的新鲜MM上,25℃诱导培养7─15天,挑取绿色角变菌落的孢子,将其转接到MM上能迅速生长,经孢  相似文献   

4.
利用PCR技术,从大肠杆菌C83902质粒中扩增出K88ac基因、ST1突变基因和LTB基因,通过分离、纯化、内切酶酶切、连接和转化,构建了含K88ac-ST1-LTB融合基因表达载体的重组菌株BL21(DE3)(pXKST3LT5)。经酶切鉴定和DNA序列分析证实,构建的重组质粒pXKST3LT5中含有K88ac-ST1-LTB融合基因,且基因序列和阅读框架均正确。经ELISA检测,重组菌株表达的K88ac-ST1-LTB融合蛋白能够被ST1单抗、LTB和K88ac抗体识别。经乳鼠灌胃试验证实,表达的融合蛋白已丧失天然ST1肠毒素的活性。免疫实验结果表明,K88ac-ST1-LTB融合蛋白能够诱发小白鼠产生抗体,该抗体具有中和天然ST1肠毒素的毒性作用,表明构建的重组菌株可以作为预防仔猪黄、白痢基因工程菌苗的候选菌株。  相似文献   

5.
王超  崔艳华  曲晓军 《微生物学报》2020,60(11):2521-2537
[目的] 在乳酸乳球菌NZ9000中异源表达德氏乳杆菌保加利亚亚种中由双组分系统TCS1(JN675228/JN675229)调控的与酸适应相关基因,进而探究德氏乳杆菌保加利亚亚种应对酸胁迫的机制。[方法] 通过逆转录聚合酶链式反应和十二烷基硫酸钠-聚丙烯酰胺凝胶电泳验证由德氏乳杆菌保加利亚亚种TCS1调控的与酸适应相关基因中腺嘌呤磷酸核糖转移酶(aprt)、D-丙氨酸-D-丙氨酸连接酶(ddl)、寡肽ABC转运蛋白(oppDII)和延伸因子Ts(tsf)在乳酸乳球菌NZ9000中的表达情况。酸处理实验验证基因表达对宿主菌酸胁迫耐受能力的影响。并采用酵母双杂交验证双组分系统TCS1与表达的酸适应相关基因之间的互作关系及具体的互作部位。[结果] 结果表明,乳酸乳球菌NZ9000中成功表达了aprtddloppDIItsfaprtddl基因使重组菌对酸胁迫的抗性分别提高了75倍和114倍。oppDIItsf基因的表达对重组菌株的耐酸能力没有明显影响。酵母双杂交实验表明TCS1中的组氨酸蛋白激酶HPK1与Ddl之间存在相互作用,且HPK1-C结构域是二者相互作用的关键区域。[结论] aprtddl过表达菌株酸刺激的适应能力显著高于对照菌株,该研究结果可为德氏乳杆菌保加利亚亚种及类似菌株耐酸性特性的获得策略提供参考。  相似文献   

6.
菊粉酶高活力菌株的筛选及其产酶研究   总被引:7,自引:2,他引:5  
贾英民  赵学慧   《微生物学通报》1996,23(4):210-213
利用透明圈法从30个菊粉酶活力菌株中筛选出两个高活力菌株H和M89,两菌株均鉴定为黑曲霉。H和M89产酶的最佳碳源是菊粉,H最适氮源是(NHSO,M89以草酸胺最好,(NHSO仅次于草酸胺。两菌株产酶的环境条件有一定差异,H  相似文献   

7.
以高感白粉病甜瓜‘066’、感病品种‘0544’、抗病品种‘Yuntian-930’为试材,对白粉病菌胁迫下外源亚精胺(Spd)处理的甜瓜幼苗叶片超氧化物岐化酶(SOD)、过氧化物酶(POD)、过氧化氢酶(CAT)和多酚氧化酶(PPO)活性,以及过氧化氢(H2O2)、丙二醛( MDA)和光合色素含量进行了研究,探讨外源Spd对甜瓜白粉病抗性的诱导效应及其生理机制。结果表明:(1)白粉病菌接种后甜瓜叶片的防御酶活性、光合色素含量先升后降,MDA含量升高;(2)外源Spd处理缓解了白粉病菌胁迫下甜瓜叶片防御酶活性、光合色素含量的下降,降低MDA含量及甜瓜的病情指数,并以1.0 mmol/L Spd处理效果最佳;(3)外源Spd处理使甜瓜叶片产生了更多的H2O2;(4)外源Spd提高甜瓜对白粉病抗性具有一定广谱性,且可向上传导。研究认为,H2O2可能参与白粉病胁迫下信号的传递,外源Spd可通过缓解白粉病菌胁迫下甜瓜防御酶活性和光合色素含量的下降来诱导甜瓜对白粉病的抗性。  相似文献   

8.
目的:构建猪传染性胃肠炎病毒S蛋白的细胞内表达重组乳酸乳球菌,确定其最佳表达条件,为重组乳酸菌作为口服疫苗防治猪传染性胃肠炎奠定基础。方法:根据猪传染性胃肠炎病毒纤突(S)蛋白的全基因序列及表达载体质粒的基因融合特点,设计一对引物,进行PCR,获得含有TGEV S基因4个主要抗原位点的约2000bp目的片段,将其与表达载体质粒pNZ8048进行连接,通过电转化进入宿主菌乳酸乳球菌NZ9000细胞内,在乳链菌肽(Nisin)的诱导下进行表达,确定最佳表达条件;并通过SDS-PAGE进行检测和Western-blot分析表达蛋白活性。结果:成功获得了TGEV S蛋白在乳酸乳球菌细胞内的表达并且表达的蛋白具有TGE全病毒的抗原性。确定了乳酸乳球菌表达TGEV S蛋白的最佳表达条件为在以1ng/ml的乳链杆菌肽nisin诱导下,诱导后3h,重组蛋白表达效率达最高,重组蛋白约占菌体总蛋白含量的8.7%。结论:在乳酸乳球菌细胞内表达的重组TGEV S蛋白获得了理想表达,为进一步研制开发防治TGE口服疫苗提供物质基础。  相似文献   

9.
对利用酵母菌转化肉桂酸生成L-苯丙氨酸的方法进行了菌株筛选、菌体细胞培养、转化反应条件以及产物提取等方面的探索。从13个属的71株酵母菌中选到转化生成L-苯丙氨酸较高的粘红酵母(Rhodosorula glusinis)As 2.102菌株。经实验得出该菌株的最佳培养条件为:在含有1.5%酵母膏、1%葡萄糖、1.5%蛋白胨、0.05%L-苯丙氨酸、0.05% KH2PO4、0.5%NaCl、pH5.0的培养基中,30℃振荡培养20小时;最佳转化条件  相似文献   

10.
以Azo-xylan为底物,利用双层平板法从堆肥中筛选到可降解木聚糖的菌株,16S rRNA测序分析显示该菌株与糖丝菌属(Saccharothrix variisporea)的同源性最高(99.33%),命名为S. variisporea YJ。研究发现以酵母提取物或(NH4)2SO4作为氮源、甘蔗叶作为碳源、初始pH值 7.0、发酵温度40 ℃、发酵时间5 d时,发酵液中木聚糖酶的酶活性最高。酶学性质研究表明该木聚糖酶的最适反应温度及pH值分别为55 ℃和8.0,在55 ℃以下及pH值 4.0~10.0的范围内保持较高稳定性。Na+能有效提高木聚糖酶活性,Mg2+和Mn2+没有明显影响,Cu2+则严重抑制木聚糖酶活性。此外,发酵液还可以直接对天然底物玉米芯进行降解。  相似文献   

11.
欧芹苯丙氨酸脱氨酶cDNA在乳酸乳球菌中的表达研究   总被引:5,自引:0,他引:5  
将欧芹(Petroselinumcrispum)苯丙氨酸脱氨酶(PAL)cDNA亚克隆到组成型表达载体pMG36e启动子P32下游,电穿孔法转化乳酸乳球菌,获得有PAL表达活性的乳酸乳球菌工程菌(pMG36ePAL/L.lactisMG1363)。通过递归PCR合成了一段120bp的调控片段,用以将pMG36e改造为分泌型表达载体pXHS,以翻译偶联的方式表达PAL,可使PAL的N末端带上usp45信号肽,结果亦检测到PAL酶活性。自行分离克隆了乳酸乳球菌热休克蛋白基因dnaJ的启动子区域,构建了热诱导表达载体pXHJ,获得PAL热诱导表达工程菌(pXHJPAL/L.lactisIL1403),经30℃至37℃热诱导,可使PAL表达活性提高至2倍。本文还就乳酸乳球菌PAL工程菌在经典型苯丙酮尿症防治中的应用进行了分析和讨论  相似文献   

12.
This study describes how a metabolic engineering approach can be used to improve bacterial stress resistance. Some Lactococcus lactis strains are capable of taking up glutathione, and the imported glutathione protects this organism against H(2)O(2)-induced oxidative stress. L. lactis subsp. cremoris NZ9000, a model organism of this species that is widely used in the study of metabolic engineering, can neither synthesize nor take up glutathione. The study described here aimed to improve the oxidative-stress resistance of strain NZ9000 by introducing a glutathione biosynthetic capability. We show that the glutathione produced by strain NZ9000 conferred stronger resistance on the host following exposure to H(2)O(2) (150 mM) and a superoxide generator, menadione (30 microM). To explore whether glutathione can complement the existing oxidative-stress defense systems, we constructed a superoxide dismutase deficient mutant of strain NZ9000, designated as NZ4504, which is more sensitive to oxidative stress, and introduced the glutathione biosynthetic capability into this strain. Glutathione produced by strain NZ4504(pNZ3203) significantly shortens the lag phase of the host when grown aerobically, especially in the presence of menadione. In addition, cells of NZ4504(pNZ3203) capable of producing glutathione restored the resistance of the host to H(2)O(2)-induced oxidative stress, back to the wild-type level. We conclude that the resistance of L. lactis subsp. cremoris NZ9000 to oxidative stress can be increased in engineered cells with glutathione producing capability.  相似文献   

13.
14.
The in vitro effects of phenylalanine and some of its metabolites on ATP diphosphohydrolase (apyrase, EC 3.6.1.5) activity in synaptosomes from rat cerebral cortex were investigated. The enzyme activity in synaptosomes from rats subjected to experimental hyperphenylalaninemia (-methylphenylalanine plus phenylalanine) was also studied. In the in vitro studies, a biphasic effect of phenylalanine on both enzyme substrates (ATP and ADP) was observed, with maximal inhibition at 2.0 mM and maximal activation at 5.0 mM. Inhibition of the enzyme activity was not due to calcium chelation. Moreover, phenylpyruvate, when compared with phenylalanine showed opposite effects on the enzyme activity, suggesting that phenylalanine and phenylpyruvate bind to two different sites on the enzyme. The other tested phenylalanine metabolites (phenyllactate, phenylacetate and phenylethylamine) had no effect on ATP diphosphohydrolase activity. In addition, we found that ATP diphosphohydrolase activity in synaptosomes from cerebral cortex of rats with chemically induced hyperphenylalaninemia was significantly enhanced by acute or chronic treatment. Since it is conceivable that ATPase-ADPase activities play an important role in neurotransmitter (ATP) metabolism, it is tempting to speculate that our results on the deleterious effects of phenylalanine and phenylpyruvate on ATP diphosphohydrolase activity may be related to the neurological dysfunction characteristics of naturally and chemically induced hyperphenylalaninemia.  相似文献   

15.
Cowley SC  Av-Gay Y 《Gene》2001,264(2):225-231
Two green fluorescent protein (Gfp) fusion vectors were constructed for use in Mycobacterium spp. The first plasmid facilitates quantification of mycobacterial promoter activity. The second vector permits construction of translational fusions of mycobacterial proteins to Gfp in order to study subcellular localization including protein secretion. Using this translational fusion construct, we verify that a Gfp fusion to the putative secreted M. tuberculosis protein ChoD is translocated to the extracellular milieu when cloned and expressed in Mycobacterium smegmatis.  相似文献   

16.
17.
A combined promoter expression vector pBV–PAL for high-level expression of phenylalanine ammonia lyase gene of Rhodosporidium toruloides was constructed. Pal gene was cloned and inserted into the region between SalI and PstI restriction sites of expression vector pBV220 (containing PLPR promoter) to obtain recombinant expression vector pBV220–PAL. The tac promoter obtained from the plasmid pKtac was inserted into the expression vector pBV220–PAL to construct expression vector pBV–PAL. The recombinant plasmid pBV220–PAL and pBV–PAL were introduced into Escherichia coli JM109 by transformation. The result showed that the transformant E. coli JM109 (pBV–PAL) gave a much higher PAL activity than that transformant E. coli JM109 (pBV220–PAL). Recombinant PAL expression level of the transformant JM109 (pBV–PAL) was about 9.6% of total cellular protein, specific enzyme activity was 2.3-fold higher than that of the transformant JM109 (pBV220–PAL), reached 35 U/g (dry cells weight, DCW). PAL specific activity of 123 U/g (DCW) could be achieved in a 5-l fermentor. 80.5% conversion rate of trans-cinnamic acid to l-phenylalanine and 5.12 g/l l-phenylalanine were obtained after 3 h bioconversion using the transformant JM109 (pBV–PAL). The recombinant strain JM109 containing the combined promoter expression vector pBV–PAL was shown to be effective and practical to product l-phenylalanine.  相似文献   

18.
为改善乳酸乳球菌的生长性能,以轮枝链霉菌染色体DNA为模板,扩增得到编码谷氨酰胺转胺酶成熟酶的基因mtg,将其克隆到质粒pNZ8148中,电转化乳酸乳球菌NZ9000,获得乳酸乳球菌NZ9000(pFL001)(重组菌)。在不控制pH条件下,重组菌的胞外pH显著高于对照菌NZ9000(pNZ8148);前者的最高生物量可达4.13gL,而后者只有0.34gL。在控制pH为6.5±0.1的条件下,重组菌最高生物量为4.73gL,对葡萄糖的菌体最高平均得率为71.1gmol,而相同条件下对照菌最高生物量为2.6gL,对葡萄糖的菌体最高平均得率为27.3gmol。由此表明,重组菌与对照菌相比,好氧生长性能得到显著改善。可能的原因是mtg的活性表达升高了重组菌的胞内pH,原先用于泵出胞内H 所需的部分能量可能因此得到节省,这样相应增加了用于细胞生长的能量。  相似文献   

19.
20.
Maize phenylalanine ammonia-lyase has tyrosine ammonia-lyase activity.   总被引:25,自引:1,他引:25       下载免费PDF全文
J Rsler  F Krekel  N Amrhein    J Schmid 《Plant physiology》1997,113(1):175-179
A full-length cDNA encoding phenylalanine ammonia-lyase (PAL) from Zea mays L. was isolated and the coding region was expressed in Escherichia coli as a C-terminal fusion to glutathione S-transferase. After purification by glutathione-Sepharose chromatography, the glutathione S-transferase moiety was cleaved off and the resulting PAL enzyme analyzed. In contrast to PAL from dicots, this maize PAL isozyme catalyzed the deamination of both L-phenylalanine (PAL activity) and L-tyrosine (tyrosine ammonia-lyase activity). These results provide unequivocal proof that PAL and tyrosine ammonia-lyase activities reside in the same polypeptide. In spite of large differences in the Michaelis constant and turnover number of the two activities, their catalytic efficiencies are very similar. Also, both activities have the same pH and temperature optima. These results imply that maize can produce p-coumaric acid from both phenylalanine and tyrosine.  相似文献   

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