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1.
用Bac-to-Bac杆状病毒系统表达人生长激素   总被引:6,自引:0,他引:6  
利用Bac to Bac杆状病毒载体表达系统将人生长激素 (humangrowthhormone ,hGH)基因cDNA克隆至转移载体pFastBac1中 ,得到pFastBac hGH ,再将其转化进入含穿梭载体Bacmid的受体菌DH10Bac中 ,发生转座作用 ,得到含hGH基因的重组穿梭载体rBacmid hGH .纯化DNA ,直接转染培养的昆虫细胞Sf9,得到重组病毒rAcV Bac hGH .经酶切PCR及Southern杂交鉴定 ,hGH基因正确地插入病毒基因组的多角体蛋白基因启动子下 ,SDS PAGE测得产物蛋白分子量为 2 2kD左右 .用免疫化学发光法测得转染上清中hGH表达水平可达 18μg ml ,与用传统的BEVS表达hGH相比 ,转染上清中hGH表达水平提高 4 0 0倍以上  相似文献   

2.
采用昆虫杆状病毒表达系统,制备人细小病毒B19病毒样颗粒(VLPs)。先通过PCR方法合成细小病毒B19衣壳蛋白基因VP2,将其克隆到pFastBac1质粒,然后转化含杆状病毒穿梭载体Bacmid的E.coliDH10Bac感受态细胞,获得重组杆状病毒表达质粒Bacmid-VP2。在脂质体介导下转染Sf9昆虫细胞,包装重组杆状病毒rBac-VP2。利用rBac-VP2感染Sf9细胞表达B19VP2蛋白,通过间接免疫荧光、Western blotting等方法鉴定目的蛋白表达。采用两次超速离心的方法对表达产物进行纯化,纯化产物在透射电镜下可见直径约22nm的VLPs。本研究成功制备了人细小病毒B19的VLPs,为B19感染血清学检测方法的建立提供了参考。  相似文献   

3.
为构建同时表达流感病毒M1和HA抗原的重组杆状病毒,采用PCR扩增流感病毒A/PR/8/34株的M1基因和去除信号肽的HA基因,将两基因克隆到杆状病毒转座载体pFastBac Dual的两个启动子下游的多克隆位点,筛选出阳性重组转座载体pFastBac Dual-M1-HA。将其转化含有杆状病毒穿梭载体(Bacmid)的DH10Bac感受态细胞,通过抗生素、蓝白斑筛选和PCR鉴定获得重组杆状病毒穿梭载体rBacmid-M1-HA,在脂质体介导下转染Sf9昆虫细胞,获得重组杆状病毒rBac-M1-HA。提取重组病毒基因组,通过PCR鉴定外源基因插入成功。间接免疫荧光和Western-blot检测表明,该重组杆状病毒在Sf9昆虫细胞中成功地表达了M1和HA。应用杆状病毒/昆虫细胞系统成功共表达流感病毒M1和HA抗原,为研究流感病毒VLP的形成机制和开发新型流感疫苗奠定了基础。  相似文献   

4.
目的:通过昆虫-杆状病毒表达系统获得人乳头瘤病毒(HPV)16/18/33/58亚型的主要衣壳蛋白L1。方法:克隆了HPV16/18/33/58亚型的L1蛋白基因,并采用密码子优化策略进行改造(记为HPV16/18/33/58亚型mL1),将优化基因片段插入pFastBac Dual载体获得重组载体,转化大肠杆菌DH10Bac感受态细胞后得到重组Bacmid,转染昆虫Sf9细胞,Western印迹和SDS-PAGE检测重组蛋白的表达。结果:获得了表达HPV16/18/33/58亚型mL1蛋白的重组杆状病毒;Western印迹和SDS-PAGE分析表明该重组杆状病毒感染昆虫Sf9细胞后表达mL1蛋白,且mL1蛋白主要分布在细胞中;优化了蛋白表达时间和感染复数,获得目的蛋白mL1的高效表达。结论:多个亚型HPV L1蛋白的克隆表达,为中国优势血清型疫苗的研制奠定了基础。  相似文献   

5.
将蛇毒TSV PA基因插入昆虫杆状病毒供体质粒pFastBacHTa中 ,在粉纹夜蛾Tn 5B1 4细胞中进行表达。SDS PAGE分析结果表明 ,表达产物为分子量 33kD的TSV PA蛋白 ,Western印迹分析也证实了此结果。酶活力测定结果表明 ,昆虫细胞表达的TSV PA蛋白具有较高活性  相似文献   

6.
将抗癌胚抗原单链抗体基因与核心链霉亲和素基因融合插入昆虫杆状病毒供体质粒 pFastBacHTa中 ,在粉纹夜蛾Tn 5B1 4细胞中进行表达。SDS PAGE分析结果表明 ,表达产物分子量为 4 1kD左右 ,Western印迹分析结果表明 ,以HRP标记的生物素进行蛋白质印迹在 4 1kD处可见表达条带 ,表明融合蛋白能特异性的与生物素结合 ,放射免疫分析表明重组杆状病毒表达产生的ScFv CS蛋白能特异性结合癌胚抗原  相似文献   

7.
目的:利用Bac-to-Bac Baculovirus Expression System表达重组HA蛋白,Western blot及IFA方法鉴定其表达。方法:采用PCR方法扩增A/California/04/2009(H1N1)HA基因,将其克隆到pFastBacHT A载体上,重组质粒pFastBacHT-HA经双酶切及测序鉴定正确后,转化阳性重组载体进入E.coli DH10Bac感受态细胞中,通过Bluo-gal蓝白斑筛选、PCR鉴定获得重组转座子rBacmid-HA。从重组转座子中提取rBacmid-HA质粒DNA转染sf 9昆虫细胞,制备重组杆状病毒。重组杆状病毒感染sf 9细胞表达重组蛋白,Western blot及IFA鉴定重组蛋白表达情况。结论:成功构建了甲型H1N1流感病毒HA基因的昆虫杆状病毒表达载体,该表达载体转染昆虫细胞后制备的重组杆状病毒病毒滴度较高,重组杆状病毒表达的重组蛋白经Western blot 及IFA 鉴定后具有良好的免疫反应原性。  相似文献   

8.
H5N1禽流感病毒HA基因在昆虫细胞中的表达及生物活性鉴定   总被引:3,自引:0,他引:3  
经RT-PCR扩增了H5N1亚型禽流感病毒血凝素基因(HA)片断,限制性内切酶酶切后将其克隆到pFastBacHTA杆状病毒转座载体,经酶切鉴定及测序,筛选出阳性重组转座载体pFastBac-H5。将pFastBacH5转化含有杆状病毒穿梭载体(bacmid)的DH10Bac感受态细胞,通过蓝白斑筛选和PCR鉴定获得重组杆状病毒穿梭载体rBacmid-H5。rBacmid-H5在脂质体介导下转染sf9昆虫细胞,SDS-PAGE蛋白电泳、Western blot、血凝试验和血凝抑制试验分析表明:分子量约63Kd重组血凝素蛋白(rH5)在sf9昆虫细胞中实现了高效表达。rH5具有血凝活性,而且其血凝活性能够被H5N1禽流感病毒高免血清所抑制;rH5免疫鸡诱导产生针对H5N1禽流感病毒亚型特异的血凝抑制抗体,说明表达的重组蛋白具有与天然蛋白相似的生物活性。  相似文献   

9.
H5N1亚型禽流感病毒NS1基因在昆虫细胞中的表达   总被引:5,自引:0,他引:5  
将H5N1亚型禽流感病毒(AIV)NS1基因插入到杆状病毒转移载体pFastBac1中,获得重组转移载体pFastBac1- NS1。将pFastBac1- NS1转化到DH10Bac感受态细胞中,筛选到重组转座子rBacmid-NS1。在脂质体转染试剂介导下将rBacmid-NS1转染对数生长期的Sf9昆虫细胞获得重组杆状病毒rBV-NS1。rBV-NS1感染Sf9细胞后,通过SDS-PAGE、Western blot和ELISA分析表明:获得了分子量为26ku的特异性NS1蛋白;并且该蛋白可与H5N1 AIV攻毒鸭的血清发生特异性免疫反应,而不能与H5N1AIV灭活疫苗免疫鸭的血清发生反应。试验结果表明:NS1在Sf9昆虫细胞中获得了高效表达,具有与天然蛋白相似的免疫活性,并可以作为区分免疫及自然感染个体的鉴别诊断抗原。本实验为建立禽流感病毒自然感染家禽与禽流感灭活苗免疫家禽的鉴别诊断方法奠定基础。  相似文献   

10.
使用同源重组方法,在昆虫细胞内将多角体启动子驱动的EGFP表达盒插入杆状病毒穿梭载体Bacmid的p74位相,经5轮空斑纯化获得重组穿梭载体Bacmid-egfp。然后将Bacmid-egfp转化含转座助手质粒的E.coliDH10B,获得受体菌E.coliDH10Bac-egfp,由于Bacmid-egfp保留了完整的转座结构和α互补功能,因此该菌株和原始E.coliDH10Bac一样能有效的利用各种pFastBac系列的载体进行转座并构建出能指示病毒繁殖和目的基因表达的重组病毒。使用红色荧光蛋白DsRed对系统进行了验证,结果表明重组病毒Bac-egfp-DsRed感染的细胞中绿色荧光蛋白和红色荧光蛋白均得到了高效表达。进一步使用该系统在昆虫细胞中高效表达并纯化了IL-6蛋白,为研究和应用该细胞因子提供物质基础,同时也进一步证明所改造的杆状病毒表达系统的可靠性和实用性。  相似文献   

11.
Staurosporine was found to bring about complete growth inhibition of human glioma cell lines. U87 MG cells were arrested in S phase while U373 MG cells in G2/M phase on staurosporine treatment. Consistent with this observation, no change in G1 phase regulators viz., Cyclin D1, D3 and CDK4 was seen on staurosporine treatment. The levels of CDK2, CDC2, Cyclin A and Cyclin B proteins decreased, while the levels of CDK inhibitors viz., p21 and p27 were found to increase on staurosporine treatment. The mRNA levels of CDK2 and CDC2 genes were also found to decrease on staurosporine treatment. Thus apart from staurosporine’s known direct inhibitory effect on CDK2 and CDC2 activities, staurosporine was found to down-regulate activities of these two kinases by modulating the expression of the kinases themselves as well that of their activating partners (Cyclins) and their inhibitors.  相似文献   

12.
目的:构建含p53保守结合位点的microRNA(miRNA)表达载体,促进相关miRNA在具有野生型p53蛋白细胞中的高效表达。方法:改构miRNA表达载体pCMV-miR,在其多克隆位点前插入p53保守结合位点,分别将miR-138、miR-34a和miR-21前体序列pre-miR-138、pre-miR-34a和pre-miR-21插入上述改构的载体pCMV/p53-miR,将构建的pCMV/p53-miR-138、pCMV/p53-miR-34a和pCMV/p53-miR-21表达载体转染具有野生型p53的HeLa细胞和不表达p53的H1299细胞,分析p53对上述miRNA表达调控的影响。结果:转染改构的miRNA表达载体后,HeLa细胞中miR-138、miR-34a和miR-21的表达水平明显提高,它们对应的已知靶基因Cyclin D3、CDK2和PTEN的表达同时被显著下调。结论:在p53转录调控作用下,具有p53保守结合位点的miRNA表达载体能够更加有效地提高miRNA的表达水平;构建的载体不但可用于促进相关miRNA的表达,也能用于miRNA是否受p53调控的检测。  相似文献   

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14.
目的:构建含嵌合内含子和抗bFGF抗体基因的真核表达载体并在293T细胞中表达,探讨嵌合内含子对抗体表达的影响。方法:设计引物分别从载体pCl-neo和pComb3-Fab25中扩增出内含子和抗体Fd段、κ链基因序列,按不同组合构建到含人免疫球蛋白IgG1恒定区Fc段基因的表达载体pIgG中。重组质粒经脂质体PEI转染293T细胞,荧光显微镜观察质粒转染情况,采用夹心ELISA和Western blot检测细胞上清中抗体的表达。结果:DNA测序和酶切分析表明,内含子和抗体基因成功插入pIgG,获得了重组质粒pIgG-Fd-κ、pIgG-Fd-intron-κ、pIgG-Fd-κ-intron和pIgG-Fd-intron-κ-intron。倒置荧光显微镜下可观察EGFP大量表达,Western blot分析上清中有抗体的表达,夹心ELISA检测pIgG-Fd-κ、pIgG-Fd-intron-κ、pIgG-Fd-κ-intron和pIgG-Fd-intron-κ-intron抗体表达量分别为1.21mg/L、0.468mg/L、7.39mg/L、0.601mg/L。结论:成功构建了含嵌合内含子和抗体基因的真核表达载体并在293T细胞中得到表达。嵌合内含子插入κ链基因5’端可提高抗体的表达,插入Fd段5’端则抑制抗体的表达。  相似文献   

15.
目的:构建人尿激酶型纤溶酶原激活因子(uPA)截短型突变体与绿色荧光蛋白(EGFP)分泌型融合表达载体并在真核细胞中表达。方法:采用PCR法,分别以质粒pIRES2-EGFP和重组质粒pcDNA3.1(+)/uPA为模板,扩增出带BamHⅠ和XbaⅠ酶切位点的EGFP及带NheⅠ和HindⅢ酶切位点的uPA截短体基因片段,先后将EGFP和截短型uPA基因片段克隆到真核表达载体pcDNA3.1(+)上,转入HEK293F细胞,用G418对转染细胞进行加压筛选,通过共聚焦显微镜观察和ELISA方法鉴定表达产物。结果:DNA测序结果显示,uPA不同截短型突变体基因片段与EGFP基因融合的真核表达载体构建成功,共聚焦显微镜观察发现HEK293F细胞中有绿色荧光且定位于细胞质中,ELISA检测到HEK293F细胞培养上清中分泌型融合蛋白的表达。结论:构建了uPA截短型突变体与EGFP分泌型融合表达载体并在真核细胞中表达,为后期研究uPA的相互作用蛋白及其生理功能奠定了基础。  相似文献   

16.
HMBA对人肝癌SMMC—7721细胞周期相关基因表达的影响   总被引:5,自引:0,他引:5  
本文研究HMBA对人肝癌SMMC-7721细胞周期G0/G1期阻滞相关基因表达的影响。免疫细胞化学和核酸原位杂交检测结果显示,HMBA可明显上调p21^WAF1/CIP1、p16蛋白表达并增强p21^WAF1/CIP1基因转录,同时对CDK4、Cyclin D1蛋白表达以及c-myc基因转录均具有明显的下调作用。结果表明,HMBA可通过增强p21^WAF1/CIP1、p16基因表达而抑制Cyclin D1-CDK4活性,最终导致细胞进入S期所需的c-myc等基因转录活性下降,从而将细胞周期阻滞于G0/G1期,诱导人肝癌细胞分化。  相似文献   

17.
Several prokaryotic and eukaryotic expression systems have been used for in vitro production of viruses’ proteins. However eukaryotic expression system was always the first choice for production of proteins that undergo post-translational modification such as glycosylation. Recombinant baculoviruses have been widely used as safe vectors to express heterologous genes in the culture of insect cells, but the manipulation involved in creating, titrating, and amplifying viral stocks make it time consuming and laborious. Therefore, to facilitate rapid expression in insect cell, a plasmid based expression system was used to express herpes simplex type 1 glycoprotein D (HSV-1 gD) and varicella zoster glycoprotein E (VZV gE). Recombinant plasmids were generated, transfected into insect cells (SF9), and both glycoproteins were expressed 48 h post-infection. A protein with approximately molecular weight of 64-kDa and 98-kDa for HSV-1 gD and VZV gE respectively was expressed and confirmed by SDS. Proteins were detected in insect cells cytoplasm and outer membrane by immunofluorescence. The antigenicity and immunoreactivity of each protein were confirmed by immunoblot and ELISA. Results suggest that this system can be an alternative to the traditional baculovirus expression for small scale expression system in insect cells.  相似文献   

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The retinoblastoma protein (pRb) and the related proteins Rb2/p130 and 107 represent the “pocket protein” family of cell cycle regulators. A key function of these proteins is the cell cycle dependent modulation of E2F-regulated genes. The biological activity of these proteins is controlled by acetylation and phosphorylation in a cell cycle dependent manner. In this study we attempted to investigate the interdependence of acetylation and phosphorylation of Rb2/p130 in vitro. After having identified the acetyltransferase p300 among several acetyltransferases to be associated with Rb2/p130 during S-phase in NIH3T3 cells in vivo, we used this enzyme and the CDK4 protein kinase for in vitro modification of a variety of full length Rb2/p130 and truncated versions with mutations in the acetylatable lysine residues 1079, 128 and 130. Mutation of these residues results in the complete loss of Rb2/p130 acetylation. Replacement of lysines by arginines strongly inhibits phosphorylation of Rb2/p130 by CDK4; the inhibitory effect of replacement by glutamines is less pronounced. Preacetylation of Rb2/p130 strongly enhances CDK4-catalyzed phosphorylation, whereas deacetylation completely abolishes in vitro phosphorylation. In contrast, phosphorylation completely inhibits acetylation of Rb2/p130 by p300. These results suggest a mutual interdependence of modifications in a way that acetylation primes Rb2/p130 for phosphorylation and only dephosphorylated Rb2/p130 can be subject to acetylation. Human papillomavirus 16-E7 protein, which increases acetylation of Rb2/p130 by p300 strongly reduces phosphorylation of this protein by CDK4. This suggests that the balance between phosphorylation and acetylation of Rb2/p130 is essential for its biological function in cell cycle control.  相似文献   

20.
The retinoblastoma (Rb) protein was originally identified as a product of a tumour suppressor gene that plays a pivotal role in regulating both the cell cycle and differentiation in mammals. The growth-suppressive activity of Rb is regulated by phosphorylation with cyclin-dependent kinase (CDK), and inactivation of the Rb function is one of the critical steps for transition from the G1 to the S phase. We report here the cloning of a cDNA (NtRb1) from Nicotiana tabacum which encodes a Rb-related protein, and show that this gene is expressed in all the organs examined at the mRNA level. We have demonstrated that NtRb1 interacts with tobacco cyclin D by using yeast two-hybrid and in vitro binding assays. In mammals, cyclin D can assemble with CDK4 and CDK6, but not with Cdc2, to form active complexes. Surprisingly, tobacco cyclin D and Cdc2 proteins can form a complex in insect cells, which is able to phosphorylate tobacco Rb-related protein in vitro. Using immunoprecipitation with the anti-cyclin D anti-body, cyclin D can be found in a complex with Cdc2 in suspension-cultured tobacco BY-2 cells. These results suggest that the cdc2 gene modulates the cell cycle through the phosphorylation of Rb-related protein by forming an active complex with cyclin D in plants.  相似文献   

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