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1.
构建了表达尼帕病毒(Nipah virus,NiV)囊膜功能糖蛋白F和G的重组杆状病毒rBac-NF、rBac-NG。Western-blot证实大小分别为61kD和66kD的重组融合蛋白(rNF)和受体结合蛋白(rNG)分别在rBac-NF、rBac-NG感染的昆虫细胞中获得表达,并且rNF前体F0可在昆虫细胞内进一步有效裂解为F1(~49kD)和F2;采用兔抗NiV病毒高免血清间接免疫荧光检测重组杆状病毒表达F和G蛋白显示出良好的特异免疫反应原性。以rBac-NF、rBac-NG感染的昆虫细胞裂解液稀释后直接包被ELISA板,间接ELISA检测兔抗灭活NiV全病毒高免血清中的F和G蛋白特异性抗体,同样具有良好的敏感性和特异性;以rBac-NF和rBac-NG感染昆虫细胞培养物直接免疫BALB/c小鼠,可诱导显著的NiVF和G蛋白特异体液免疫反应,产生的特异抗体可有效中和NiV囊膜蛋白F和G介导的伪型VSV重组病毒侵入NiV易感宿主细胞的感染性。结果表明,杆状病毒表达重组F和G蛋白抗原具有替代NiV全病毒,作为安全、经济、敏感和特异的诊断抗原的潜力,并为重组病毒亚单位疫苗防制尼帕病毒性脑炎的探索研究奠定了基础。  相似文献   

2.
表达尼帕病毒G囊膜糖蛋白重组牛痘病毒的研究   总被引:1,自引:0,他引:1  
采用牛痘病毒WR株,构建了表达哺乳动物密码子优化的NiV G蛋白基因的重组病毒rWR-NiV-G。Westernblot证实大小为66kDa的重组G蛋白在rWR-NiV-G感染的Hela细胞中获得表达;采用兔抗NiV高免血清间接免疫荧光检测重组痘病毒表达G蛋白显示出良好的特异免疫反应原性。rWR-NiV-G感染NiV敏感的BHK细胞系,并与NiV融合蛋白F共同表达,可形成强烈细胞融合现象。rWR-NiV-G感染免疫BALB/c小鼠,可诱导显著的NiV G蛋白特异体液免疫反应。以原核表达NiV G蛋白片段为包被抗原,间接ELISA检测rWR-NiV-G感染免疫小鼠血清中的G蛋白特异抗体,具有良好的敏感性和特异性。同时,rWR-NiV-G感染免疫小鼠血清中的G蛋白特异抗体可有效中和NiV囊膜蛋白F和G介导的伪型VSV重组病毒侵入NiV易感宿主细胞的感染性。结果表明,重组牛痘病毒表达的NiV G蛋白有良好的免疫原性和生物学活性功能,为进一步深入研究NiV G蛋白生物学功能、免疫原性及重组活载体疫苗研究奠定了重要基础。  相似文献   

3.
尼帕病毒F糖蛋白在重组牛痘病毒中的表达及鉴定   总被引:3,自引:0,他引:3  
尼帕病毒(NiV)F蛋白在病毒侵入细胞和诱导中和抗体等方面具有重要作用。通过over-lapping PCR合成密码子优化的F蛋白基因构建了表达NiV F蛋白的重组牛痘病毒(WR株)rWR-NiV-F。利用兔抗NiV血清为检测抗体,通过间接免疫荧光(IFA)检测到了F蛋白在重组病毒感染细胞中的表达。SDS-PAGE和Western blot检测证明重组蛋白F0被裂解为F1和F2。以rWR-NiV-F感染瞬时转染共表达NiV受体结合囊膜糖蛋白G的BHK细胞,可诱导细胞膜融合及合包体形成,证明该重组病毒表达F蛋白保持良好的抗原性及生物学活性,为NiV诊断及重组活载体疫苗研究奠定了重要基础。  相似文献   

4.
分别将裂谷热病毒(Rift Valley Fever Virus,RVFV)囊膜糖蛋白GN、GC和G(N C)基因亚克隆至真核表达载体pCAGGS多克隆位点鸡β-actin转录启动子下游,分别构成pCAGG-RVFV-GN、pCAGG-RVFV-GC和pCAGG-RVFV-G(N C)。免疫沉淀试验结果表明,重组RVFV蛋白GN、GC分别在pCAGG-RVFV-GN、pCAGG-RVFV-G(N C)转染HeLa细胞中获得表达,并具有良好免疫反应性。pCAGG-RVFV-GN、pCAGG-RVFV-GC和pCAGG-RVFV-G(N C)质粒DNA混合物按100μg/只剂量肌肉注射免疫6周龄BALB/c小鼠。每隔4周用相同的剂量加强免疫,第二次加强免疫3周后采血、分离血清备用。分别以杆状病毒表达RVFV囊膜蛋白GN、GC制备的抗原液包被ELISA板,间接ELISA检测DNA免疫鼠血清中RVFV囊膜蛋白G(N C)特异性抗体,具有良好的敏感性和特异性。另外,DNA免疫鼠血清中的特异抗体可有效中和RVFV囊膜蛋白G(N C)介导的伪型VSV重组病毒侵入RVFV易感宿主细胞的感染性。结果表明,pCAGG-RVFV-GN、pCAGG-RVFV-GC和pCAGG-RVFV-G(N C)质粒DNA混合物作为DNA疫苗具有防制裂谷热的潜力。  相似文献   

5.
为了评价基因Ⅰ型乙型脑炎病毒prM-E DNA疫苗与prM和EⅢ融合抗原亚单位疫苗采用DNA初免-蛋白加强免疫策略对小鼠的免疫效果,本研究将prM-E融合基因插入到pVAX1真核表达载体中,构建重组表达载体prM-E-pVAX1作为DNA疫苗进行初免,利用原核表达系统获得的prM和EⅢ融合抗原作为亚单位疫苗进行加强免疫。将32只4−6周龄雌性BALB/c小鼠随机分成4组,设置prM-E-pVAX1 DNA疫苗组、DNA初免-蛋白加强免疫组、prM和EⅢ融合抗原亚单位疫苗组及pVAX1载体对照组,通过ELISA检测血清中特异性抗体水平;通过噬斑减少中和试验滴定中和抗体滴度;通过细胞因子表达丰度和淋巴细胞增殖试验分析不同疫苗免疫组诱导产生的细胞免疫反应。结果表明,用DNA初免-蛋白加强策略免疫的小鼠诱导产生的中和抗体滴度略高于prM和EⅢ融合抗原亚单位疫苗免疫组,显著高于prM-E-pVAX1 DNA疫苗免疫组。DNA初免-蛋白加强策略在小鼠模型中诱导产生了有效的Th1/Th2型免疫反应,特别是显著诱导了Th1型细胞免疫反应。本研究为预防流行性乙型脑炎提供了新的免疫策略和理论参考依据。  相似文献   

6.
本研究利用HEK293F细胞表达了埃博拉病毒重组膜蛋白,并通过免疫小鼠初步研究了其免疫原性。按照人密码子使用频度优化编码埃博拉病毒膜蛋白胞外区基因,合成后将其插入到真核表达载体pXG-Fc中,构建埃博拉病毒糖蛋白和人IgG Fc片段融合蛋白表达质粒pXG-modGP-Fc。利用瞬时转染技术,将融合蛋白表达质粒转染到高密度培养的悬浮HEK293F细胞中,实现了分泌表达。通过Protein A亲和层析,得到了纯化的重组蛋白。将纯化的融合蛋白免疫小鼠,并通过间接ELISA对小鼠抗体效价进行评价。蛋白纯化及分析结果表明,本研究构建的真核表达系统能够有效表达埃博拉重组蛋白GP-Fc,细胞培养上清中重组蛋白以二聚体形式存在。通过间接ELISA分析,纯化的重组蛋白免疫实验动物后,可以在血清中检出高滴度的抗原特异性IgG,显示该重组蛋白具有良好的免疫原性。通过该研究,我们得到了具有良好免疫原性的重组蛋白,同时,该工作为研制基于重组蛋白的埃博拉疫苗以及筛选单克隆抗体打下基础。  相似文献   

7.
SARS-CoV S蛋白受体结合区的重组表达及免疫原性分析   总被引:2,自引:0,他引:2  
为了表达SARS-CoV的S蛋白的受体结合区并对其免疫原性进行分析,用PCR方法扩增S蛋白的受体结合区基因片段,克隆至原核表达质粒pET-32a+并在大肠杆菌中表达,应用Western-blot鉴定表达的目的蛋白,而后以该蛋白作为诊断抗原包被酶联板来检测20份SARS病人血清和28份健康人血清,结果原核表达的S蛋白能够和所用的SARS病人血清反应.这提示表达的S重组蛋白具有良好的抗原性.将变性纯化的重组蛋白和复性蛋白分别皮下免疫小鼠,第三次免疫一周后收集抗血清,用ELISA测定抗体和同时测定中和抗体活性.用变性的抗原免疫的小鼠血清均无中和活性;而用复性的蛋白免疫的小鼠产生了中和抗体.实验表明,S蛋白受体结合区无线性中和表位,中和抗体的产生是由构象表位诱导的.提示该蛋白有可能应用于亚单位疫苗的研究.  相似文献   

8.
目的:利用昆虫杆状病毒表达系统重组表达中东呼吸综合征冠状病毒(MERS-Co V)S1蛋白,并对其免疫效果进行评价。方法:构建含有MERS-Co V S1基因的重组杆状病毒质粒,转染Sf9细胞包装杆状病毒;重组病毒传代3次获得种子病毒,感染Sf9细胞,收获感染上清,通过镍离子亲和层析纯化获得S1重组蛋白;用纯化的S1蛋白免疫BALB/c小鼠,采用ELISA检测免疫小鼠血清抗原特异性的抗体水平;采用假病毒中和试验检测血清中抗体的中和活性。结果:获得了表达MERS-Co V S1蛋白的重组病毒株,在昆虫细胞中表达并纯化了S1重组蛋白;利用重组表达的S1蛋白免疫小鼠3次,血清S1特异性Ig G抗体滴度可达1∶102 400,免疫小鼠血清稀释至1/5120后中和百分比仍达50%以上。结论:利用昆虫细胞重组表达的MERS-Co V S1蛋白具有良好的免疫原性,并能有效诱导产生高滴度中和抗体,为发展MERS-Co V重组蛋白疫苗奠定了基础。  相似文献   

9.
利用Bac-to-Bac杆状病毒表达系统表达DEK蛋白并进行纯化。首先以pFastBacI质粒构建重组质粒pFastBacI-DEK,转化DH10Bac大肠杆菌后获得重组穿梭载体Bacmid-DEK,通过脂质体介导转染Sf9细胞产生具有强感染力的重组杆状病毒AcNPV-DEK。用此重组杆状病毒AcNPV-DEK感染Sf9细胞表达His-DEK融合蛋白。在非变性条件下,利用Ni-NTA agarose对表达的His-DEK融合蛋白进行纯化,经SDS-PAGE和Western blotting分析,在50 kDa处出现特异性蛋白条带并证实其为His-DEK融合蛋白。凝胶迁移阻滞实验表明,融合蛋白His-DEK与DNA 的结合具有结构特异性,其与超螺旋型DNA结合活性强于与线性化DNA的结合活性。真核表达并纯化的融合蛋白His-DEK与DNA的结合活性要明显强于原核表达的融合蛋白His-CDB。DEK 蛋白的磷酸化修饰会阻碍其与DNA的结合,而Sf9细胞中表达的融合蛋白His-DEK存在磷酸化修饰,将His-DEK去磷酸化后,其与DNA的结合活性有所提高。  相似文献   

10.
新城疫病毒F蛋白在昆虫细胞中的表达及其融细胞作用   总被引:1,自引:0,他引:1  
用RT-PCR方法扩增出新城疫病毒标准强毒株F48E8的F基因,并将其克隆到pGEM-T载体,命名为pGEM-NDF.鉴定正确后,以BamHI和XbaI双酶切将F基因从pGEM-NDF中释放出来,并插入到pFast Bac I载体中,得到重组转移载体pFast-NDF.然后将该重组质粒转入含有穿梭质粒的感受态DH10Bac中,通过转座作用获得重组穿梭质粒reBacmid-NDF.再用reBacmid-NDF转染Sf9昆虫细胞,获得含有新城疫病毒F48E8株F基因的重组杆状病毒.间接免疫荧光和Western-blot分析结果表明F蛋白在昆虫细胞中获得表达,而且主要表达于细胞膜上,并使感染重组杆状病毒的昆虫细胞在96h发生融合作用.动物试验表明,表达的F蛋白能够产生中和抗体.本文的研究结果为F蛋白的进一步开发奠定了基础.  相似文献   

11.
Foreign glycoproteins expressed in recombinant vesicular stomatitis virus (VSV) can elicit specific and protective immunity in the mouse model. We have previously demonstrated the expression of respiratory syncytial virus (RSV) G (attachment) and F (fusion) glycoprotein genes in recombinant VSV. In this study, we demonstrate the expression of RSV F and G glycoproteins in attenuated, nonpropagating VSVs which lack the VSV G gene (VSVDeltaG) and the incorporation of these RSV proteins into recombinant virions. We also show that intranasal vaccination of mice with nondefective VSV recombinants expressing RSV G (VSV-RSV G) or RSV F (VSV-RSV F) elicited RSV-specific antibodies in serum (by enzyme-linked immunosorbent assay [ELISA]) as well as neutralizing antibodies to RSV and afford complete protection against RSV challenge. In contrast, VSVDeltaG-RSV F induced detectable serum antibodies to RSV by ELISA, but no detectable neutralizing antibodies, yet it still protected from RSV challenge. VSVDeltaG-RSV G failed to induce any detectable serum (by ELISA) or neutralizing antibodies and failed to protect from RSV challenge. The attenuated, nonpropagating VSVDeltaG-RSV F is a particularly attractive candidate for a live attenuated recombinant RSV vaccine.  相似文献   

12.
Nipah virus, a member of the paramyxovirus family, was first isolated and identified in 1999 when the virus crossed the species barrier from fruit bats to pigs and then infected humans, inducing an encephalitis with up to 40% mortality. At present there is no prophylaxis for Nipah virus. We investigated the possibility of vaccination and passive transfer of antibodies as interventions against this disease. We show that both of the Nipah virus glycoproteins (G and F) when expressed as vaccinia virus recombinants induced an immune response in hamsters which protected against a lethal challenge by Nipah virus. Similarly, passive transfer of antibody induced by either of the glycoproteins protected the animals. In both the active and passive immunization studies, however, the challenge virus was capable of hyperimmunizing the vaccinated animals, suggesting that although the virus replicates under these conditions, the immune system can eventually control the infection.  相似文献   

13.
尼帕病毒膜融合蛋白F和受体结合蛋白G在病毒感染和诱导机体产生保护性免疫中起重要的作用。通过PCR扩增获得尼帕病毒F1和G基因片段(均去掉信号肽和跨膜区),克隆至原核表达载体,IPTG诱导大肠杆菌表达目的蛋白,Western blot表明重组F1、G蛋白与兔抗尼帕病毒血清具有良好的反应原性;同时将F1和G基因克隆至经改造过的杆状病毒表达载体,获得了含有目的基因的重组杆状病毒,接种sf9单层细胞,间接免疫荧光检测表明F1、G蛋白在杆状病毒中正确表达,并与抗尼帕病毒血清具有良好的反应原性。以纯化原核表达的F1、G蛋白免疫兔获得了抗F1和抗G重组蛋白的特异血清,Western blot和间接免疫荧光检测表明所制备的血清具有特异性。试验所表达的抗原和制备的特异血清可用于尼帕病的诊断。  相似文献   

14.
阮力  郑浩强 《病毒学报》1992,8(2):101-109
  相似文献   

15.
A cDNA fragment covering the genomic region that encodes the structural proteins of hog cholera virus (HCV) was inserted into the tk gene of vaccinia virus. Expression studies with vaccinia virus/HCV recombinants led to identification of HCV-specific proteins. The putative HCV core protein p23 was demonstrated for the first time by using an antiserum against a bacterial fusion protein. The glycoproteins expressed by vaccinia virus/HCV recombinant migrated on sodium dodecyl sulfate-gels identically to glycoproteins precipitated from HCV-infected cells. A disulfide-linked heterodimer between gp55 and gp33 previously detected in HCV-infected cells was also demonstrated after infection with the recombinant virus. The vaccinia virus system allowed us to identify, in addition to the heterodimer, a disulfide-linked homodimer of HCV gp55. The vaccinia virus/HCV recombinant that expressed all four structural proteins induced virus-neutralizing antibodies in mice and swine. After immunization of pigs with this recombinant virus, full protection against a lethal challenge with HCV was achieved. A construct that lacked most of the HCV gp55 gene failed to induce neutralizing antibodies but induced protective immunity.  相似文献   

16.
Chimeric bovine respiratory syncytial viruses (BRSV) expressing glycoproteins of bovine parainfluenza virus type 3 (BPIV-3) instead of BRSV glycoproteins were generated from cDNA. In the BRSV antigenome cDNA, the open reading frames of the major BRSV glycoproteins, attachment protein G and fusion protein F, were replaced individually or together by those of the BPIV-3 hemagglutinin-neuraminidase (HN) and/or fusion (F) glycoproteins. Recombinant virus could not be recovered from cDNA when the BRSV F open reading frame was replaced by the BPIV-3 F open reading frame. However, cDNA recovery of the chimeric virus rBRSV-HNF, with both glycoproteins replaced simultaneously, and of the chimeric virus rBRSV-HN, with the BRSV G protein replaced by BPIV-3 HN, was successful. The replication rates of both chimeras were similar to that of standard rBRSV. Moreover, rBRSV-HNF was neutralized by antibodies specific for BPIV-3, but not by antibodies specific to BRSV, demonstrating that the BRSV glycoproteins can be functionally replaced by BPIV-3 glycoproteins. In contrast, rBRSV-HN was neutralized by BRSV-specific antisera, but not by BPIV-3 specific sera, showing that infection of rBRSV-HN is mediated by BRSV F. Hemadsorption of cells infected with rBRSV-HNF and rBRSV-HN proved that BPIV-3 HN protein expressed by rBRSV is functional. Colocalization of the BPIV-3 glycoproteins with BRSV M protein was demonstrated by confocal laser scan microscopy. Moreover, protein analysis revealed that the BPIV-3 glycoproteins were present in chimeric virions. Taken together, these data indicate that the heterologous glycoproteins were not only expressed but were incorporated into the envelope of recombinant BRSV. Thus, the envelope glycoproteins derived from a member of the Respirovirus genus can together functionally replace their homologs in a Pneumovirus background.  相似文献   

17.
The glycoprotein precursor (G1/G2) gene of tomato spotted wilt virus (TSWV) was expressed in BHK cells using the Semliki Forest virus expression system. The results reveal that in this cell system, the precursor is efficiently cleaved and the resulting G1 and G2 glycoproteins are transported from the endoplasmic reticulum (ER) to the Golgi complex, where they are retained, a process that could be blocked by tunicamycin. Expression of G2 alone resulted in transport to and retention in the Golgi complex, albeit less efficient, suggesting that G2 contains a Golgi retention signal. G1 alone was retained in the ER, irrespective of whether it contained the precursor's signal sequence or its own N-terminal hydrophobic sequence. Coexpression of G1 and G2 from separate gene constructs resulted in rescue of efficient G1 transport, as the proteins coaccumulated in the Golgi complex, indicating that their interaction is essential for proper targeting to this organelle. The results demonstrate that transport and targeting of the plant TSWV glycoproteins in mammalian BHK cells are strikingly similar to those of animal-infecting bunyavirus glycoproteins in mammalian cells. The observations are likely to reflect the dual tropism of TSWV, which replicates both in its plant host and in its animal (thrips) vector.  相似文献   

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