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1.
利用基因组学和生物信息学的方法,从一种植物内生枯草芽孢杆菌菌株Bs0922的基因组DNA中克隆了纳豆激酶的同源基因NK-Bs0922,长度为1 149 bp。通过重组和转化在大肠杆菌BL21(DE3)中表达了一个大小为48.0 kD的重组蛋白。  相似文献   

2.
利用PCR技术对自行筛选的高度耐盐节杆菌Arthrobacter pascensDMDC12中的超氧化物歧化酶基因进行克隆,获得了节杆菌A.pascensDMDC12的SOD新基因(GenBank收录号为DQ779150)。将该基因与原核表达质粒载体pET-22b( )连接,构建重组质粒pET-sodAP,将质粒转化至表达宿主菌E.coliBL21(DE3),构建基因工程菌BL21/pET-sodAP。用异丙基硫代--βD-半乳糖苷(IPTG)诱导重组SOD蛋白表达,用酶活和SDS-PAGE分析表达产物,表达产物的相对分子质量为2.4×104,与sodAP推测的长度相同。表达目的蛋白占菌体可溶性蛋白的23%,比酶活达915.07 IU.mg-1,是对照菌株的8.73倍,具有较高的表达。本研究为进一步进行重组Mn-SOD的研究和应用奠定了基础。  相似文献   

3.
以绿色荧光蛋白为报告基因的原核启动子检测体系构建   总被引:1,自引:0,他引:1  
以质粒pMUTIN-GFP 扩增获得的目的gfp 基因为报告基因,将其克隆到大肠杆菌-枯草芽孢杆菌穿梭载体pBE2,构建成一个具有启动子活性检测功能的重组质粒pBE2-GFP .将组成型启动子P43和诱导型启动子Pspac克隆入pBE2-GFP ,得到重组表达载体pBE-GFP-P43和pBE-GFP-Pspac,转化至大肠杆菌和枯草芽孢杆菌.荧光显微镜检测GFP 蛋白的表达情况.结果 表明,2种不同类型的启动子均能在大肠杆菌BL21和枯草芽孢杆菌1A751中启动gfp 基因的表达.  相似文献   

4.
利用PCR扩增技术得到枯草芽孢杆菌(Bacillus subtilis)过氧化氢酶基因katA,将该基因与表达载体pET-20b(+)连接构建重组质粒,经测序验证后,在大肠杆菌JM109中进行表达得到重组大肠杆菌基因工程菌E.coli BL21(DE3)(pET-20b(+)-katA).SDS-PAGE电泳结果显示出...  相似文献   

5.
从Bacillus alcalophillus PB92中扩增出碱性蛋白酶基因Mapr,Mapr分别插入到大肠杆菌载体pET-22b( )和枯草芽孢杆菌载体pWB980中构建成重组分泌型表达载体pET22b( )-Mapr、pWB980-Mapr。碱性蛋白酶基因分别在大肠杆菌宿主BL21和枯草芽孢杆菌DB104中得到表达。SDS-PAGE分析,重组蛋白酶的分子量为28kD。在大肠杆菌,所得酶活为231U/ml,而在枯草芽孢杆菌,其酶活为1563U/ml。大概是由于碱性蛋白酶在枯草芽孢杆菌折叠成熟机制与大肠杆菌的不同造成的。  相似文献   

6.
亚克隆的碱性β-甘露聚糖酶基因(man)来源于嗜碱芽孢杆菌N16-5,构建了大肠杆菌-枯草芽孢杆菌诱导型表达质粒pDG-man,在大肠杆菌JM109中获得了活性表达,经0.5 mmol/L的IPTG诱导后,可表达5 U/mL碱性β-甘露聚糖酶。重组大肠杆菌DE3-RIL(pDG-man)表达β-甘露聚糖酶水平是大肠杆菌JM109(pDG-man)的2倍。重组枯草芽孢杆菌WB600(pDG-man)可表达19.2 U/mL碱性β-甘露聚糖酶。  相似文献   

7.
本研究对枯草芽孢杆菌中性蛋白酶的基因进行克隆,并在大肠杆菌中诱导表达。从枯草芽孢杆菌基因组克隆到编码中性蛋白酶的全长基因,构建大肠杆菌原核表达载体pET30b,转化大肠杆菌BL21得到重组工程菌。通过菌落PCR和酶切筛选验证重组体。在25℃,110 r/min条件下,用IPTG诱导重组蛋白表达。表达蛋白用SDS-PAGE验证,并对酶活力进行测定。测序结果表明克隆序列与NCBI上的登录的序列同源性高达99%。SDS-PAGE结果表明诱导出的蛋白相对分子质量56.6 kD,酶活力达到39 U/mL。证明成功克隆得到枯草芽孢杆菌中性蛋白酶基因,并在大肠杆菌中得到高效表达。  相似文献   

8.
以碱性蛋白酶生产菌克劳氏芽孢杆菌(Bacillus clausii)基因组DNA为模板PCR扩增获得尿酸氧化酶基因(BcU),插入原核表达载体pET28α中,构建表达载体pET-BcU,并转化大肠杆菌BL21(DE3)获得重组大肠杆菌BL21(DE3)/pET-BcU。经IPTG诱导,重组菌BL21(DE3)/pET-BcU表达出有活性的尿酸氧化酶,含空质粒的重组菌在同样条件下没有酶活。酶学性质分析显示,重组酶最适pH值为9.0,在pH值9.0~11范围内酶活几乎不变,是一种高碱性尿酸氧化酶。  相似文献   

9.
目的:在大肠杆菌宿主中过量表达丁二酮还原酶(DAR),同时构建辅酶NADH原位再生系统,利用全细胞高效催化丁二酮不对称还原合成(S)-乙偶姻。方法:PCR克隆多黏芽孢杆菌(Paenibacillus polymyxa) dar基因连到质粒pETDuet-1,转化至大肠杆菌(Escherichia coli) BL21(DE3),构建重组菌E. coli BL21(DE3)-DAR;通过Hi Trap TALON柱亲和层析纯化表达产物DAR酶蛋白,测定DAR的比酶活和分子动力学参数。在重组菌E. coli BL21(DE3)-DAR中构建辅酶NADH原位再生系统,协同表达枯草芽孢杆菌(Bacillus subtilis)的葡萄糖脱氢酶(GDH),构建重组菌E. coli BL21(DE3)-DAR/GDH,并以此重组菌为全细胞生物催化剂,优化催化条件,提高(S)-乙偶姻的产量和产率。结果:获得重组工程菌E. coli BL21(DE3)-DAR和E. coli BL21(DE3)-DAR/GDH。DAR以NADH为辅酶还原丁二酮的米氏常数Km、最大催化速率Vmax、催化常数Kcat分别为2. 59mmol/L、1. 64μmol/(L·min·mg)、12. 3/s,还原丁二酮生成(S)-乙偶姻光学的纯度为95. 86%,具有较好的催化效率和立体异构体选择性。构建辅酶NADH原位再生系统后,重组菌E. coli BL21(DE3)-DAR/GDH可高效催化丁二酮合成乙偶姻。在最优催化条件下分批补料,乙偶姻产量达51. 26g/L,转化率为81. 37%,生产速率为5. 13g/(L·h)。结论:使用非手性化合物原料丁二酮生产高附加值的手性化合物(S)-乙偶姻,以重组菌为全细胞生物催化剂合成(S)-乙偶姻,不需额外添加昂贵的辅酶,具有较高的生产应用价值。  相似文献   

10.
[目的]实现解淀粉芽孢杆菌α-淀粉酶在大肠杆菌中的高效表达,建立有效的透析复性方法,获得有活性的重组淀粉酶。[方法]以解淀粉芽孢杆菌DSM 7基因组DNA为模板,PCR扩增获得无信号肽的α-淀粉酶结构基因,克隆至p ET-22b(+),转化E.coli BL21(DE3),IPTG诱导表达,SDS-PAGE检测重组蛋白表达情况,采用透析法进行包涵体复性并检测酶活。[结果]成功表达重组蛋白,相对分子量约为54.8k Da,成功复性包涵体,复性效率为22.78%,重组α-淀粉酶酶活力为102.4 U/m L。[结论]实现了解淀粉芽孢杆菌α-淀粉酶在大肠杆菌中的高效表达,包涵体经透析法成功复性,获得具有催化活性的重组淀粉酶。  相似文献   

11.
目的:对一株产鸟氨酸的钝齿棒杆菌Corynebacterium crenatum SYPA5-5/△proB/△argF(SYPO-1)进行代谢工程改造,筛选不同细菌来源的N-乙酰鸟氨酸脱乙酰基酶在大肠杆菌中克隆与表达,纯化后对其进行酶学性质的比较;将黏质沙雷氏菌Serratia marcescens Y213来源的Smarg E基因编码的N-乙酰鸟氨酸脱乙酰基酶在L-鸟氨酸生产菌株C.crenatum SYPO-1中过量表达,进一步提高L-鸟氨酸的产量。方法:通过利用pDXW10穿梭质粒对不同来源的N-乙酰鸟氨酸脱乙酰化酶进行克隆表达和酶学性质比较,选择性质最优来源的N-乙酰鸟氨酸脱乙酰基酶编码基因Smarg E在产L-鸟氨酸重组钝齿棒杆菌中表达,考察重组菌株发酵过程中参数的变化。结果:来源于S.marcescens Y213的N-乙酰鸟氨酸脱乙酰基酶比酶活最高为798.98U/mg,最适pH为7,最适温度为37℃,0.1mmol/L的Mg~(2+)、Li~+、Mn~(2+)促进酶的比酶活提高了50%;在钝齿棒杆菌中表达N-乙酰鸟氨酸脱乙酰基酶酶活达到128.4U/ml,显著提高了钝齿棒杆菌中胞内乙酰基循环水平;5L发酵罐发酵重组菌株96h,L-鸟氨酸的产量达到38.5g/L,比出发菌株,L-鸟氨酸的产量提高了33.2%,产率达0.401g/(L·h)。结论:筛选出最佳来源的N-乙酰鸟氨酸脱乙酰基酶,在鸟氨酸生产菌株C.crenatum(SYPO-1)中过量表达,可以促进鸟氨酸的前体物质N-乙酰鸟氨酸的快速消耗,实现鸟氨酸的积累。  相似文献   

12.
Bacillus subtilis membrane-bound holo-cytochrome c-550 was found to be expressed from the structural gene cloned on a plasmid vector in aerobically grown Escherichia coli and exhibited normal biochemical properties. This occurs despite the lack of endogenous eytochrome c and suggests that eytochrome c-heme lyase activity is also present in aerobic E. coli. The membrane topology of B. subtilis eytochrome c-550 was studied using fusions to alkaline phosphatase (PhoA). The results show that the heme domain (at least when fused to PhoA) can be translocated as apo-cytochrome and confirm that the N-terminal part of the cytochrome functions as both export signal and membrane anchor for the C-tenninal heme domain. A model for the organisation of B. subtilis cytochrome c-550 in the cytoplasmic membrane is presented.  相似文献   

13.
The gene encoding the meso-diaminopimelate dehydrogenase of Bacillus sphaericus was cloned into E. coli cells and its complete DNA sequence was determined. The meso-diaminopimelate dehydrogenase gene consisted of 978 nucleotides and encoded 326 amino acid residues corresponding to the subunit of the dimeric enzyme. The amino acid sequence deduced from the nucleotide sequence of the enzyme gene of B. sphaericus showed 50% identity with those of the enzymes from Corynebacterium glutamicum and Brevibacterium flavum. The enzyme gene from B. sphaericus was highly expressed in E. coli cells. We purified the enzyme to homogeneity from a transformant with 76% recovery. The N-terminal amino acid of both the enzyme from B. sphaericus and the transformant were serine, indicating that the N-terminal methionine is removed by post-translational modification in B. sphaericus and E. coli cells.  相似文献   

14.
大肠埃希菌Mn-SOD基因的克隆、表达及多克隆抗体制备   总被引:1,自引:0,他引:1  
目的实现Mn-SOD基因在大肠埃希菌中的高可溶性表达,制备Mn-SOD的多克隆抗体。方法用PCR方法从一株野生型大肠埃希菌(E.coli)基因组中扩增Mn-SOD基因编码区.将它克隆到原核表达载体上进行大量表达和纯化,再用纯化的蛋白对新西兰大白兔进行背部多点注射,40d后取其血清,用Western-blot印迹实验测定抗体效果。结果SDS-PAGE分析表明SOD的表达量约为细菌总蛋白的50%;黄嘌呤氧化酶法测定表达蛋白活性,结果表明每毫克菌体可溶性总蛋白中表达产物酶比活为3921.77U/mg,是对照BL21的276.77倍;并制备了高效价的多克隆抗体。结论该研究成功地构建了大肠埃希菌Mn-SOD基因高效原核表达系统,所表达的Mn-SOD具有良好的免疫原性和免疫反应性。  相似文献   

15.
Human β-defensin-2 (hBD2) is a short cationic peptide with a broad antimicrobial spectrum. The coding sequence of hBD2 was cloned into pET-32a (+) to construct a fusion expression plasmid, pET32–hBD2, which was transformed into E. coli BL21 (DE3) for expression. The cultivation parameters of the expression vector harboring strain were optimized to produce the fusion protein in soluble form efficiently and to avoid the formation of insoluble inclusion bodies. The optimal conditions were determined as following: cultivation at 28 °C in MBL medium, induction at middle stage of exponential growth with 0.8 mM IPTG, and post-induction expression for 8 h. Under the above conditions, a high percentage of the target fusion protein (≥92.3%) was expressed in soluble form and the volumetric productivity of soluble fusion protein reached 1.3 g/l. The culture process was successfully scaled up in a 10 l bench-top fermentor.  相似文献   

16.
为构建弧菌铁蛋白受体pvuA重组质粒,提高其在大肠杆菌BL21中的表达产量,优化表达条件,并为其免疫原性研究奠定基础,从副溶血弧菌基因组DNA扩增了弧菌铁蛋白受体pvuA基因,构建了重组质粒pET-28a(+)-ferric vibrioferrin receptor,转入大肠杆菌BL21并经异丙基硫代半乳糖苷(isopropyl β-D-thiogalactoside,IPTG)诱导表达蛋白。在单因素试验的基础上,以菌体初始浓度、诱导时间、诱导温度、诱导剂浓度为自变量,菌体蛋白浓度为响应值,根据响应面法的Box-Benhnken中心设计原理,研究自变量及其交互作用对弧菌铁蛋白产量的影响,利用Design-Expert和响应面分析相结合的方法对诱导条件进行优化。IPTG诱导获得的重组蛋白以包涵体的形式存在,优化后最终确定重组弧菌铁蛋白受体pvuA最佳表达条件为菌体初始浓度OD600=0.6,诱导时间10 h,诱导温度37℃,IPTG浓度为1.0 mmol·L-1,此时包涵体沉淀中蛋白含量最高,为11.00 mg·mL-1。构建了弧菌铁蛋白受体pvuA的大肠杆菌重组表达质粒,通过优化表达...  相似文献   

17.
Objective: To clone the chitinase gene ChiA from the endophytes of Periplaneta americana soluble expression of the protein and to identify its function.Methods:The chitinase gene ChiA was amplified by PCR from the DNA of Serratia marcescens,which was separated from the gut of Periplaneta americana and obtained by subcloning. The expression plasmid ChiA/pET21b was constructed and analyzed by bioinformatics. The plasmid was transformed into E. coli BL21(DE3) and the postive strains were induced by IPTG at 20℃ for 20h. The bioactivity of the protein was determined by small punch test.Results:The cloned sequence was associated with Serratia marcescens ChiA gene of GenBank and their homology was 99%. The sequence encoded a protein containing of 571 amino acids and expressed stably in prokaryotic system.SDS-PAGE/Western blot show that the soluble target protein was obtained. The small punch test suggested that the target protein had the activity of decomposing chitin and was stronger than that of the Serratia marcescens.Conclusion:The chitinase gene ChiA of the Serratia marcescens from the gut of Periplaneta americana was cloned successfully. The soluble chitinase that shows marked bioactivity was attained by prokaryotic expression system, which has provided theoretical basis for its further application.  相似文献   

18.
旨在构建植原体免疫主导膜蛋白Imp基因原核表达载体,并进行初步表达。以重组克隆质粒pMD18-T-Imp为模板,PCR扩增Imp基因片段。构建表达载体pET-28a(+)-Imp,转化宿主菌E.coliBL21(DE3)。筛选阳性克隆,提取重组质粒作PCR鉴定、酶切鉴定及IPTG诱导表达鉴定。PCR及双酶切结果显示,重组质粒pET-28a(+)-Imp构建成功。经IPTG诱导BL21(pET-28a(+)-Imp)表达约20 kD的蛋白,与预期的携带6×His-Tag的目的蛋白(19.5 kD)大小相符,主要以包涵体形式存在。结果显示,构建的表达载体pET-28a(+)-Imp在E.coliBL21(DE3)中能够达一定量表达,为进一步纯化Imp蛋白奠定基础。  相似文献   

19.
Xylanase B from Paenibacillus barcinonensis was cloned in shuttle vectors for Escherichia coli and Bacillus subtilis, and expressed in Bacillus hosts. Several recombinant strains were constructed, among which B. subtilis MW15/pRBSPOX20 showed the highest production. This recombinant strain consists of a protease double mutant host containing P. barcinonensis xynB gene under the control of a phage SPO2 strong promoter. Maximum production was found when the strain was cultured in nutrient broth supplemented with xylans. Analysis of xylanase B location in B. subtilis MW15/pRBSPOX20 showed that the enzyme remained cell-associated in young cultures, consistent with its intracellular location in its original host, P. barcinonensis, and the lack of a signal peptide. However, when cultures reached the stationary phase, xylanase B was released to the external medium as a result of cell lysis. The amount of enzyme located in the supernatants of old cultures could account for 50% of total xylanase activity. Analysis by SDS-PAGE showed that xylanase B is an abundant protein found in the culture medium in late stationary phase cultures.  相似文献   

20.
The methylotrophic yeast Pichia pastoris is an attractive heterologous protein expression host, mainly for genes from higher eukaryotes. However, no successful examples for the expression of bacterial gene encoding pectate lyase in P. pastoris have been reported. The present study reports for the first time the cloning and functional expression of the bacterial Bacillus subtilis gene encoding alkaline pectate lyase in P. pastoris. A molecular weight of 43,644 Da was calculated from the deduced amino acid sequence. A pectate lyase activity as high as 100 U/ml was attained in the fermentation broth of P. pastoris GS 115, which was about 10 times higher than when the gene is expressed in Escherichia coli. The recombinant pectate lyase was purified to homogeneity and maximal activity of the enzyme was observed at 65 °C, and pH 9.4. The recombinant enzyme showed a wider pH and thermal stability spectrum than the purified pectate lyase from B. subtilis WSHB04-02. Pectate lyase activity slightly increased in the presence of Mg2+ (ion) but decreased in the presence of other metal ions. Analysis of polygalacturonic acid degradation products by electrospray ionization-mass spectrometry revealed that the degradation products were unsaturated trigalacturonic acid and unsaturated bigalacturonic acid, which confirms that the enzyme catalyzes a trans-elimination reaction.  相似文献   

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