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1.
猪瘟病毒E2基因真核表达质粒的构建及基因疫苗的研究   总被引:31,自引:1,他引:30  
构建了猪瘟病毒(classical swine fever virus, CSFV)主要保护性抗原E2基因4种不同的真核表达质粒.小鼠免疫试验表明,E2基因上不同的功能区对基因疫苗的免疫应答有很大影响,有信号肽序列的E2基因可诱导产生特异性免疫反应,且无跨膜区序列的E2基因所诱导的免疫应答反应比有跨膜区序列的强,而无信号肽序列的E2基因则不能诱导产生CSFV特异性的免疫反应.攻毒保护试验表明,免疫家兔最少可抵抗10个最小感染剂量(MID)的猪瘟兔化弱毒苗(Hog cholera lap-inized virus, HCLV)的攻击;免疫猪可抵抗致死剂量的CSFV石门株强毒的攻击.  相似文献   

2.
抗真菌蛋白Rs—AFPs基因在大肠杆菌中的表达   总被引:3,自引:0,他引:3  
将抗真菌蛋白Rs-AFP1和Rs-AFP2全长cDNA插入表达质粒pET-22b/NcoI+SacI位点,构建成融合蛋白表达载体pRAF1和pRAF2.将不含信号肽编码序列的Rs-AFP1和Rs-AFP2cDNA分别插入pET-22b/Ncol+Sacl和pET-22b/Ndel+SacI位点,构建成不含信号肽序列的融合蛋白表达载体pRAF3、pRAF4和非融合蛋白表达载体pRAF5和pRAF6.将构建的上述各种表达载体转化E.coliBL21,挑菌落培养,IPTG诱导,使Rs-AFPs基因得到表达,并用体外抑菌试验检测表达产物的活性,结果表明,各种表达载体的表达产物均具有不同程度的抑菌活性,其中,pRAF3和pRAF4表达产物的抑菌活性较明显.  相似文献   

3.
Epstein-Barr病毒膜抗原基因免疫的研究   总被引:4,自引:0,他引:4  
叶萍  李燕  谷淑燕 《病毒学报》1998,14(3):215-220
将Epstein-Bar病毒(EBV)膜抗原(MA)BLLF1基因,插入含有CMV启动子的真核表达载体pcDNA3下游BamHI位点,构建成真核表达质粒pcDNA3-MA。将纯化的DNA注射Balb/c小鼠股四头肌。经免疫的动物产生抗EB病毒MA特异性的抗体和中和抗体,依赖抗体细胞介导的细胞毒作用(ADCC),特异性T淋巴细胞增生性反应及细胞毒性T淋巴细胞(CTL)杀伤作用。基因免疫与基因-蛋白联合免疫效果相似。不同启动子控制下的MA基因,诱发小鼠免疫应答无明显差异。  相似文献   

4.
将马铃薯Y病毒普通系(PVY0)的外壳蛋白基因克隆到表达质粒pMALc2中,构建这一基因在大肠杆菌中的表达载体pMALc2PVY0CP。SDSPAGE及Westernbloting检测结果表明,这一表达栽体在E.coliDH5α中经IPTG诱导可表达分子量为71.8kDa的特异性融合蛋白。以amyloseresin亲合柱层析纯化这一融合蛋白为抗原,免疫家兔制备了效价为1∶1024的特异性抗血清。用该抗血清可通过对流免疫电泳、免疫双扩散及Westernbloting对PVY进行检测  相似文献   

5.
叶萍  李燕 《病毒学报》1998,14(3):215-220
将Epstein-Barr病毒(EBV)膜抗原(MA)BLLF1基因,插入含有CMV启动子的真核表达载体pcDNA3下游BamHI位点,构建成真核表达质粒pcDNA3-MA。将纯化的DNA注射Balb/c小鼠股四头肌。经免疫的动物产生抗EB病毒MA特异性的抗体和中和抗体,依赖抗体细胞介导的细胞毒作用(ADCC),特异性T淋巴细胞增生性反应及细胞毒性T淋巴细胞(CTL)杀伤作用。基因免疫与基因-蛋白  相似文献   

6.
乙型肝炎病毒 (HBV)感染是我国常见病及多发病。HBV难以清除的原因之一就是机体的免疫功能障碍。目前虽然基因重组HBV表面抗原 (HBsAg)疫苗预防HBV感染取得了较好的效果 ,但基因重组HBsAg疫苗主要能诱导特异性体液免疫 ,不能刺激机体的细胞免疫应答。近年来发现基因疫苗可诱导机体产生细胞及体液免疫反应 ,特别是诱导细胞免疫反应的能力优于蛋白、多肽类疫苗 ,更适应于慢性病毒感染的预防与治疗[1,2 ] 。为了探讨应用HBV基因疫苗预防HBV感染的可能性 ,本文构建了HBV全S基因和HBsAg基因疫苗 ,观察和比…  相似文献   

7.
水稻脂质转移蛋白基因的分离和分析   总被引:3,自引:0,他引:3  
用水稻脂质转移蛋白(lipidtransferprotein,LTP)的cDNA(pFDRSC110)为探针,从水稻(OryzasativaL.sp.indica)“广陆矮4号”基因文库中筛选出LTP基因,完成了1.8kb长片段的序列测定。该基因编码一个121个氨基酸组成的肽,编码区中间有一个90bp的内含子,基因的调控区除有2个TATAbox和polyA加工信号外,还存在多个回文序列和逆向重复序列。该基因编码的蛋白质N端是由28个氨基酸组成的信号肽,同源性比较表明它具有典型的植物LTP特征。  相似文献   

8.
将切去3’端穿膜序列的EB病毒膜抗原(MA)基因,插入pSV2-dhfr质粒的SV40早期启动子下游,构建了真核表达载体pSV2-dhfrGPTR,使两个SV40早期启动子分别调控MA和二氢叶酸还原酶(dhfr)基因。将该重组质粒转化CHO-dhfr细胞,在选择培养基中筛选阳性克隆,用氨甲喋呤加压扩增,建立了表达EBV-MA的克隆细胞系。westernblot分析证明,所表达的蛋白的分子量大约为340kd和220kd。经过细Sepharose2B琼脂糖凝胶层析初步纯化的抗原与福氏佐剂混合免疫小鼠,2周后小鼠血清中出现明显的gp340/220特异性抗体,表明切去嵌膜区结构的EBV-MA基因在CHO细胞中的表达产物具有同天然膜抗原相似的分子量大小、糖基化程度、免疫特异性和免疫原性,可望成为EB病毒人用基因工程亚单位疫苗。  相似文献   

9.
抗结肠癌相关抗原单链抗基因的构建和表达   总被引:3,自引:2,他引:1  
通过PCR扩增和酶切分别得到抗结肠癌相关抗原抗体的重链可变区序列,轻链可变区序列及连接肽序列,将它们构建成为VH-linker-VL形式的单链抗体基因片段,并在大肠杆菌中进行了表达,SDS-PAGE分析结果表明,以pComb3为载体,在大肠杆菌JM83中,scFv未获得有效表达,而以pET-22b(+)为载体的scFv在大肠杆菌BL21(DE3)中,30℃诱导培养获得了高效表达,表达水平占全菌蛋白  相似文献   

10.
将编码丙型肝炎病毒(HCV)E2蛋白417~750位氨基酸的DNA片段 克隆到真核表达载体pcDNA 3.1(-)中的CMV IE启动子下游,构建成HCV E2重组真核表达质粒 pcE2。ELISA法检测pcE2 DNA免疫兔血清中的E2抗体变化和维持规律,结果显示免疫20d已有 抗体产生,30d后开始进入高峰,40d时达到最高值,至第90d抗体水平保持平稳,抗体滴度 达到1∶1600左右。流式细胞计数仪(FACS)检测pcE2 DNA免疫鼠CD4+、CD8+T淋巴细胞变 化情况,与注射空载体pCDNA3.1(-)的阴性鼠相比,CD4+淋巴细胞水平略有上升,CD8+ 细胞水平有较大升高,增幅达35.46%。免疫组化检测结果显示注射pcE2的小鼠组织中有明显 的阳性着色,而注射pcDNA3.1(-)的对照组小鼠免疫组化结果为阴性。以上结果表明:pcE2 在实验动物内表达出的HCV E2蛋白可以引起免疫动物的体液免疫应答和细胞免疫应答,尤其 是MHC-1限制性杀伤性CD8+T淋巴细胞水平的提高对清除 病毒是十分有利的,因此HCV E2 DNA免疫有可能成为预防和治疗HCV感染的一条新途径。  相似文献   

11.
用重组PCR技术对猪瘟病毒石门株E2基因进行了定点突变, 然后将突变后的基因克隆至表达载体质粒pET-28a(+)中,构建成重组质粒pETE2。将pETE2转入受体菌BL21(DE3)plysS中,在IPTG的诱导下, 重组转化菌可高效表达目的基因, 表达量平均可达菌体蛋白总量的28%。免疫印迹和间接ELISA表明所表达的蛋白是CSFV特异性的。此重组蛋白免疫的家兔可抵抗猪瘟兔化弱毒的攻击。  相似文献   

12.
猪瘟病毒E2(gp55)基因的克隆表达及其DNA疫苗的初步研究   总被引:12,自引:1,他引:11  
用RTPCR方法从中国标准强毒株石门毒的细胞培养物中 扩增获得了其结构蛋白E2基因cDNA,将之克隆到pGEM5Z T载体,用双脱氧链终止法测定其核苷酸序列,并推导出其对应氨基酸序列,与几个代表毒株Alfort株、Brescia株和C株相应序列进行比较,所测核苷酸序列与各株的同源性分别为84.7%、92.6%和95.2%,氨基酸序列的同源性分别为89.4%,92.6%和94.6%;将此E2片段亚克隆至真核表达载体pcDNA3.1,构建表达CSFV E2蛋白的重组质粒pcE2,用脂质体转染法将pcE2导入cos7细胞进行瞬时表达,用针对E2蛋白的特异性单抗以间接免疫荧光法检测,结果E2蛋白在cos7细胞中获得了正确表达,随之将pcE2质粒DNA进行小鼠肌内接种免疫,ELISA法检测证实在免疫后2周和4 周的小鼠体内可诱导出较为明显的阳性血清,并高于E2单抗的阳性对照,病毒中和试验也表明DNA免疫后小鼠体内可诱导产生CSFV中和抗体;同时构建了能在昆虫细胞Sf9中表达GSTE2和GSTGFPE2融合蛋白的重组杆状病毒;上述研究结果为研制针对CSFV的DNA疫苗,亚单位疫苗及其诊断试剂打下了基础。  相似文献   

13.
E2 is an envelope glycoprotein of Classical swine fever virus (CSFV) and contains sequential neutralizing epitopes to induce virus-neutralizing antibodies and mount protective immunity in the natural host. In this study, four antigen domains (ABCD) of the E2 gene was cloned from CSFV Shimen strain into the retroviral vector pBABE puro and expressed in eukaryotic cell (PK15) by an retroviral gene expression system, and the activity of recombinant E2 protein to induce immune responses was evaluated in rabbits. The results indicated that recombinant E2 protein can be recognized by fluorescence antibodies of CSFV and CSFV positive serum (Lanzhou Veterinary Research Institute, Chinese Academy of Agricultural Sciences, Lanzhou, China) using Western blot, indirect immunofluorescence antibody test (IFAT) and ELISA, Furthermore, anti-CSFV specific antibodies and lymphocyte proliferation were elicited and increased by recombinant protein after vaccination. In the challenge test, all of rabbits vaccinated with recombinant protein and Chinese vaccine strain (C-strain) were fully protected from a rabbit spleen virus challenge. These results indicated that a retroviral-based epitope-vaccine carrying the major antigen domains of E2 is able to induce high level of epitope-specific antibodies and exhibits similar protective capability with that induced by the C-strain, and encourages further work towards the development of a vaccine against CSFV infection.  相似文献   

14.
E2 is an envelope glycoprotein of Classical swine fever virus (CSFV) and contains sequential neutralizing epitopes to induce virus-neutralizing antibodies and mount protective immunity in the natural host. In this study, four antigen domains (ABCD) of the E2 gene was cloned from CSFV Shimen strain into the retroviral vector pBABE puro and expressed in eukaryotic cell (PK15) by an retroviral gene expression system, and the activity of recombinant E2 protein to induce immune responses was evaluated in rabbits. The results indicated that recombinant E2 protein can be recognized by fluorescence antibodies of CSFV and CSFV positive serum (Lanzhou Veterinary Research Institute, Chinese Academy of Agricultural Sciences, Lanzhou, China) using Western blot, indirect immunofluorescence antibody test (IFAT) and ELISA, Furthermore, anti-CSFV specific antibodies and lymphocyte proliferation were elicited and increased by recombinant protein after vaccination. In the challenge test, all of rabbits vaccinated with recombinant protein and Chinese vaccine strain (C-strain) were fully protected from a rabbit spleen virus challenge. These results indicated that a retroviral-based epitope-vaccine carrying the major antigen domains of E2 is able to induce high level of epitope-specific antibodies and exhibits similar protective capability with that induced by the C-strain, and encourages further work towards the development of a vaccine against CSFV infection. Foundation items: The National “973” (2005CB523201); Key Technology R&D Programme (2006BAD06A03).  相似文献   

15.
Fowlpox virus (FPV) recombinants expressing the glycoprotein B and the phosphorylated protein (pp38) of the GA strain of Marek's disease virus (MDV) were assayed for their ability to protect chickens against challenge with virulent MDV. The recombinant FPV expressing the glycoprotein B gene elicited neutralizing antibodies against MDV, significantly reduced the level of cell-associated viremia, and, similar to the conventional herpesvirus of turkeys, protected chickens against challenge with the GA strain and the highly virulent RB1B and Md5 strains of MDV. The recombinant FPV expressing the pp38 gene failed to either elicit neutralizing antibodies against MDV or protect the vaccinated chickens against challenge with MDV.  相似文献   

16.
含具有哺乳动物细胞活性的启动子的重组杆状病毒(BacMam病毒)可有效转导多种哺乳动物细胞,并被广泛用于开发新型非复制型载体疫苗.将水泡性口炎病毒G蛋白(VSV-G)基因插入多角体启动子下游,得到经修饰的杆状病毒转移载体,将对虾白斑综合症病毒(WSSV)ie1启动子控制下的猪瘟病毒E2基因表达盒插入此载体中,构建了BacMam病毒BacMam/G-ie1-E2,以其感染Sf9细胞和转导HeLa细胞,通过间接免疫荧光试验和Western blot分析检测E蛋白的表达,同时用BacMam病毒直接免疫小鼠,用检测猪瘟病毒抗体的间接ELISA方法检测免疫小鼠血清抗体,用基于CFSE和WST-8的淋巴细胞增殖试验评价其细胞免疫应答.结果显示,BacMam/G-ie1-E2能同时在昆虫细胞和哺乳动物细胞中高效表达E2蛋白,免疫小鼠能诱导产生针对猪瘟病毒的特异性抗体,免疫小鼠脾细胞经猪瘟病毒刺激后能诱导特异性的淋巴细胞增殖.这表明,由BacMam病毒介导的基因转移有望用于开发针对猪瘟病毒的非复制型载体疫苗.  相似文献   

17.
为构建具有凝集性、免疫反应性的双功能融合蛋白,本研究采用重叠延伸PCR方法将2E8ScFv(抗人红细胞H抗原单链抗体基因)和mE2(猪瘟病毒E2蛋白主要抗原编码区基因)拼接成融合基因2E8mE2,并插入原核表达载体pET-DsbA,将重组表达质粒pET-DsbA-2E8mE2转化入大肠杆菌Escherichia coli BL21(DE3)PlysS中进行IPTG诱导表达,表达的融合蛋白经SDS-PAGE和Western blotting分析鉴定,结果表明:2E8mE2融合基因在大肠杆菌中获得了表达,表达产物以包涵体形式存在,分子量约为65kDa,与预期的大小一致。分别采用亲和层析法和谷胱甘肽再氧化法对融合蛋白进行纯化和复性,红细胞凝集试验证实:2E8mE2融合蛋白复性效果良好,既能够与人红细胞结合,又能够与猪瘟病毒抗体反应,具有双功能特性。  相似文献   

18.

Background

Japanese encephalitis virus (JEV) is the major cause of viral encephalitis in Southeast Asia. Vaccination of domestic pigs has been suggested as a “one health” strategy to reduce viral disease transmission to humans. The efficiency of two lentiviral TRIP/JEV vectors expressing the JEV envelope prM and E glycoproteins at eliciting protective humoral response was assessed in a mouse model and piglets.

Methodology/Principal Findings

A gene encoding the envelope proteins prM and E from a genotype 3 JEV strain was inserted into a lentiviral TRIP vector. Two lentiviral vectors TRIP/JEV were generated, each expressing the prM signal peptide followed by the prM protein and the E glycoprotein, the latter being expressed either in its native form or lacking its two C-terminal transmembrane domains. In vitro transduction of cells with the TRIP/JEV vector expressing the native prM and E resulted in the efficient secretion of virus-like particles of Japanese encephalitis virus. Immunization of BALB/c mice with TRIP/JEV vectors resulted in the production of IgGs against Japanese encephalitis virus, and the injection of a second dose one month after the prime injection greatly boosted antibody titers. The TRIP/JEV vectors elicited neutralizing antibodies against JEV strains belonging to genotypes 1, 3, and 5. Immunization of piglets with two doses of the lentiviral vector expressing JEV virus-like particles led to high titers of anti-JEV antibodies, that had efficient neutralizing activity regardless of the JEV genotype tested.

Conclusions/Significance

Immunization of pigs with the lentiviral vector expressing JEV virus-like particles is particularly efficient to prime antigen-specific humoral immunity and trigger neutralizing antibody responses against JEV genotypes 1, 3, and 5. The titers of neutralizing antibodies elicited by the TRIP/JEV vector are sufficient to confer protection in domestic pigs against different genotypes of JEV and this could be of a great utility in endemic regions where more than one genotype is circulating.  相似文献   

19.
猪瘟病毒E2蛋白C端含有一段30多个疏水性氨基酸组成的跨膜区域(Transmembraneregion,TMR),用RTPCR和巢式PCR分别扩增了含不同长度TMR的猪瘟兔化弱毒E2基因,并克隆入pGEX4T1的MCS中,构建了原核表达载体pGEXTE2339(无TMR)、pGEXTE2355(1TMR)、pGEXTE2375(3TMR)。因E2基因含有大量大肠杆菌稀有密码子,选择了BL21CodonPlus(DE3)RP作为表达受体菌,结果表明pGEXTE2339、pGEXTE2355以包涵体的形式正确表达了目的蛋白,而pGEXTE2375没有明显表达。并利用pGEXTE2339、pGEXTE2355表达的融合蛋白初步建立了间接ELISA方法。  相似文献   

20.
It has been reported that genes encoding antigens of bacterial and viral pathogens can be expressed in plants and are shown to induce protection antibodies. The structural protein E2 of classical swine fever virus (CSFV), which has been shown to carry critical epitopes, has been expressed in different systems. Here, we report the expression of CFSV E2 gene in tobacco chloroplasts. Mice immunized with leaf extracts elicited specific antibodies. This indicated that the expressed E2 proteins had a certain degree of immunogenicity. To our knowledge, this is the first report showing induction of protective antibody in response to classical swine fever virus (CSFV) by immunization with antigen protein E2 expressed in tobacco chloroplasts, which will open a new way to protection from CSFV by plant chloroplasts as bioreactors.  相似文献   

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