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1.
获得稳定、高效的具有良好抗原性的蓝舌病毒(Bluetongue virus,BTV)vp7基因重组抗原.将BTV编码群特异性抗原VP7的S7基因片段克隆至pMD18-T质粒载体中,构建S7克隆重组质粒,进行核苷酸序列分析.与已报道的多株BTV编码VP7的基因比较后发现,所测定毒株的核苷酸序列与BTV10型的S7基因同源性高达98.7%,推测的氨基酸同源性为99.3%,证实为BTV的S7基因.然后亚克隆插入pBAD/ThioTOPO表达载体,转化LGM194细胞,经抗性培养、PCR、限制性内切酶分析、测序鉴定,筛选获得BTV S7基因片段正向插入、有正确读码框的阳性克隆,成功构建了BTV群特异性抗原VP7的重组表达载体.经L-araboinose诱导表达,可稳定、高效地表达VP7蛋白抗原.SDS-PAGE、ELISA试验表明,表达蛋白为融合蛋白,具有反应原性,分子量约54.5kD,重组蛋白的获得率为1.52mg/g湿菌,其表达产量约占菌体总蛋白的12%左右,相当于93.5mg/L菌液.融合蛋白中含有BTV VP7特异性蛋白抗原,可作为c-ELISA包被抗原,为蓝舌病的免疫血清学诊断试剂的制备和分子生物学研究打下了坚实基础.  相似文献   

2.
以猪水泡病病毒RNA为模板,应用反转录聚合酶链式反应(RT-PCR)技术,扩增了849bp的VP1基因,通过T-A克隆技术,将VP1基因片段克隆至pMD18-T克隆载体质粒中,构建SVDVVP1基因克隆重组质粒,进行核苷酸序列分析。然后亚克隆插入pBAD/ThioTOPO表达载体,经测序鉴定,筛选获得VP1基因正向插入、有正确读码框的阳性克隆,成功构建了猪水泡病病毒VP1基因重组表达载体。经L-Arabinose诱导表达,可稳定、高效地表达VP1蛋白抗原。SDS-PAGE结果表明,以终浓度为0.002%的L-阿拉伯醛糖进行诱导,5h后表达可达到高峰,表达蛋白为融合蛋白,质量约47.13kDa,表达产量约占菌体总蛋白的16%。Westernblotting检测表明,诱导的蛋白能与猪水泡病阳性血清发生特异性反应。融合蛋白中含有猪水泡病病毒VP1蛋白抗原,为应用该表达蛋白抗原制备SVD免疫血清学诊断试剂和新型疫苗构建奠定基础。  相似文献   

3.
以猪水泡病病毒RNA为模板,应用反转录聚合酶链式反应(RT-PCR)技术,扩增了849bp的VP1基因,通过T-A克隆技术,将VP1基因片段克隆至pMD18-T克隆载体质粒中,构建SVDV VP1基因克隆重组质粒,进行核苷酸序列分析.然后亚克隆插入pBAD/Thio TOPO表达载体,经测序鉴定,筛选获得VP1基因正向插入、有正确读码框的阳性克隆,成功构建了猪水泡病病毒VP1基因重组表达载体.经L-Arabinose诱导表达,可稳定、高效地表达VP1蛋白抗原.SDS-PAGE结果表明,以终浓度为0.002%的L-阿拉伯醛糖进行诱导,5h后表达可达到高峰,表达蛋白为融合蛋白,质量约47.13kDa,表达产量约占菌体总蛋白的16%.Western blotting检测表明,诱导的蛋白能与猪水泡病阳性血清发生特异性反应.融合蛋白中含有猪水泡病病毒VP1蛋白抗原,为应用该表达蛋白抗原制备SVD免疫血清学诊断试剂和新型疫苗构建奠定基础.  相似文献   

4.
水泡性口炎病毒核蛋白基因的表达及初步应用   总被引:3,自引:0,他引:3  
将水泡性口炎病毒编码群特异性抗原的N基因片段克隆至pMD18-T克隆载体质粒中,构建N基因克隆重组质粒,进行核苷酸序列分析。然后亚克隆插入pBAD/Thio TOPO表达载体,经PCR限制性内切酶分析、测序鉴定,筛选获得N基因正向插入、有正确读码框的阳性克隆,成功构建了水泡性口炎病毒N基因重组表达载体。经L-Arabinose诱导表达,可稳定、高效地表达N蛋白抗原。SDS-PAGE、Western blotting及间接ELISA试验结果表明,表达蛋白为融合蛋白,质量约63.5 kD,其表达产量约占菌体总蛋白的16%,相当于92mg/L。融合蛋白中含有水泡性口炎病毒群特异性的核蛋白抗原,应用表达的VSV核蛋白抗原建立了酶联免疫吸附试验,通过对186份山羊、豚鼠实验动物人工感染VSV的血清样品和参考血清样品的检测,并与微量血清中和试验进行了比较,结果表明:以表达的VSV核蛋白为包被抗原的酶联免疫吸附试验是一种特异性强、敏感性高、快速、简单、安全的检测方法,抗原制备成本低。  相似文献   

5.
采用PCR从猪丹毒丝菌C43311株基因组中扩增出编码表面保护性抗原A的spaA基因片段,将其克隆到pMD18-T载体并对插入片段进行测序.用spaA基因N端免疫保护区(spaA-N)的特异引物从重组质粒pMD18-spaA中扩增得到spaA-N片段,将其定向插入原核表达载体pGEX-6p-2中,构建重组表达质粒pGEX-spaA-N,转化大肠杆菌BL21(DE3),在IPTG诱导下表达融合蛋白GST-SpaA-N,用SDS-PAGE和Western印迹检测表达产物.测序结果表明spaA基因片段大小为1881bp,与已报道的不同血清型菌株spaA基因的核苷酸序列比较,核苷酸序列同源性在93%~99%之间.SDS-PAGE结果显示表达蛋白约为64kDa,与预期的大小相近.Western印迹检测结果表明,表达的融合蛋白GST-SpaA-N能与C43311株SpaA蛋白的抗血清发生特异性反应,证明原核融合表达蛋白具有免疫反应性.  相似文献   

6.
[目的]探索犬细胞毒性T细胞相关抗原-4(cytotoxic T lymphocyte-associated antigen-4,CTLA-4)胞外区作为免疫佐剂的可行性.[方法]根据已发表序列设计引物,用RT-PCR扩增CTLA-4胞外区编码序列,用PCR扩增犬细小病毒(canine parvovirus,CPV)VP2蛋白主要抗原表位基因片段VP2S,将VP2S克隆入含和不含CTLA-4胞外区基因片段的原核表达质粒pQE-31;用获得的重组质粒pQE-CTLA-4-VP2S和pQE-VP2S转化大肠杆菌,并进行诱导表达;用相同剂量的重组蛋白VP2S和CTLA-4-VP2S免疫小鼠.用间接ELISA和血凝抑制试验比较两个免疫组的抗体水平.[结果]经过30次循环PCR扩增后,琼脂糖凝胶电泳显示预期大小的扩增产物;序列测定结果显示,克隆的毕格犬CTLA-4胞外区与已发表序列的核苷酸同源性为99.2%,氨基酸序列同源性为98.4%,结合B7分子的六肽基序(MYPPPY)无变化:VP2S与已发表CPV VP2的核苷酸序列同源性为99%,氨基酸序列同源性为98.6%:经IPTG诱导后,两种重组大肠杆菌表达预期的29kDa VP2S和42kDaCTLA-4-VP2S重组蛋白,两者均能被CPV抗血清识别;间接ELISA和血凝抑制试验结果显示,CTLA-4-VP2S免疫组的抗体产生时间为初免后第2周,抗体高峰期为初免后第4周,而VP2S免疫组的抗体产生时间为初免后第4周,抗体高峰期为初免后第5周,两个试验组高峰期ELISA抗体效价和血凝抑制抗体效价分别相差100倍和10倍.[结论]犬CTLA-4胞外区可作为分子佐剂促进CPV VP2蛋白抗体的产生.  相似文献   

7.
从汉坦病毒陈株感染的Vero-E6细胞裂解液中提取病毒RNA,经逆转录PCR获得病毒S基因编码区约1.3kb cDNA片段,克隆该片段后进行核苷酸序列测定,并与汉坦病毒76-118株进行同源性比较,结果二者核苷酸序列同源性为86%,推导的氨基酸序列同源性为97%.将该基因片段插入原核表达载体pGEX-4T-1,在大肠杆菌中获得高效表达.表达产物为GST-NP融合蛋白.SDS-PAGE检测表达蛋白分子约72kD左右.Western blotting和ELISA试验结果表明,表达产物可与多株抗汉坦病毒核蛋白的McAb发生反应,其抗原表位及McAb反应谱与76-118株相比存在某些差异.  相似文献   

8.
利用RTPCR和nested PCR(nPCR)技术扩增出猪水泡病病毒VP1基因的抗原区,将其克隆到表达载体pProEXHTb中,获得重组质粒,经PCR、酶切和序列分析鉴定表明,目的基因插入的位置、大小和读码框均正确。将重组质粒导入BL21(DE3),经IPTG诱导表达后SDSPAGE检测表明,重组菌能表达猪水泡病病毒VP1抗原区蛋白;Western blot检测表明,诱导表达的抗原区蛋白能与猪水泡病阳性血清发生特异性反应。  相似文献   

9.
构建重组质粒PHIL-D2/PreS2S以研究乙肝病毒PreS2(120-146)S基因编码蛋白在毕赤酵母中的表达。通过PCR扩增获得PreS2S片段,插入含AOX1启动子的Pichia Pastoris表达载体PHIL-D2中,构建重组表达质粒PHIL-D2/PreS2S,转化酵母宿主菌GS115。挑取阳性克隆摇床培养,甲醇诱导表达。通过ELISA、RPHA鉴定表达产物。成功构建了PHIL-D2/PreS2S真核表达载体,经过序列分析,插入的基因为在中国流行的adr亚型。在毕赤酵母中重组载体表达了S蛋白,S蛋白的表达量为34.9 mg/L,PreS2抗原检测为强阳性。利用毕赤酵母表达系统能够有效地表达乙型肝炎病毒的PreS2S蛋白,PreS2S蛋白具有良好的生物学活性。  相似文献   

10.
汉坦病毒陈株S基因编码区的克隆,序列分析及表达   总被引:1,自引:0,他引:1  
从汉坦病毒陈株感染的VeroE6细胞裂解液中提取病毒RNA,经逆转录PCR获得病毒S基因编码区约1.3kbcDNA片段,克隆该片段后进行核苷酸序列测定,并与汉坦病毒76118株进行同源性比较,结果二者核苷酸序列同源性为86%,推导的氨基酸序列同源性为97%。将该基因片段插入原核表达载体pGEX4T1,在大肠杆菌中获得高效表达。表达产物为GSTNP融合蛋白。SDSPAGE检测表达蛋白分子约72kD左右。Westernbloting和ELISA试验结果表明,表达产物可与多株抗汉坦病毒核蛋白的McAb发生反应,其抗原表位及McAb反应谱与76118株相比存在某些差异。  相似文献   

11.
A monoclonal antibody (MAb) specific for the bluetongue virus (BTV) group specific antigen (VP7) was characterized for its reactivity with purified virus and recombinant BTV VP7 (rVP7) protein and its suitability for use in the sandwich ELISA. The MAb, designated as 5B5 was specific to VP7 and belongs to IgG2a subclass and was selected for the development of the sELISA in this study. The MAb had a titer of 1:25 with BTV and 1:2 with the rVP7 protein. The sELISA is based on capturing of BTV antigen with VP7 specific MAb followed by detection using BTV polyclonal antiserum raised in rabbits. The assay was evaluated with six cell culture adapted serotypes of BTV that have been isolated from India, 1, 2, 15, 17, 18 and 23. The assay could detect BTV antigen as early as day 8 in blood. It was also successfully applied for the detection of BTV group specific antigen in clinical samples of blood, washed RBCs, buffy coat and plasma. A total of 102 field samples from animals, suspected of being infected with BTV, were tested and 29.42% were positive. The blood samples were also amplified in cell culture which improved the sensitivity of the assay. Results confirmed that the sELISA is rapid and specific.  相似文献   

12.
Recently the insect baculovirus Autographa californica nuclear polyhedrosis virus (AcNPV) has been effectively adapted as a highly efficient vector in insect cells for the expression of various genes. A cDNA sequence of RNA segment 9 of bluetongue virus serotype 10 (BTV-10, an orbivirus member of the Reoviridae family) encoding a minor core protein (VP6) has been inserted into the BamHI site of the pAcYM1 transfer vector derived from AcNPV. Spodoptera frugiperda cells were cotransfected with the derived vector in the presence of authentic AcNPV DNA to produce recombinant viruses. These synthesized significant amounts of a protein (representing ca. 50% of the stained cellular protein) similar in size and antigenicity to the authentic BTV VP6. The expressed protein was identified as a nucleic acid-binding protein by using an RNA overlay-protein blot assay. A polyclonal anti-VP6 serum prepared by using the expressed VP6 protein has been used in an immunogold procedure to locate VP6 in BTV-infected mammalian cells. Gold was found to be associated with the matrix of virus inclusion bodies (VIB), with viruslike particles in the VIB, as well as with mature virion particles that were in close proximity to the VIB or were released from cells and adsorbed to cell surfaces. The recombinant virus antigen has also been used to identify antibodies to different BTV serotypes in infected sheep sera, indicating the potential of the expressed protein as a group-reactive antigen for the diagnosis of BTV infections.  相似文献   

13.
S Tanaka  P Roy 《Journal of virology》1994,68(5):2795-2802
Bluetongue virus (BTV) cores consist of the viral genome and five proteins, including two major components (VP3 and VP7) and three minor components (VP1, VP4, and VP6). VP3 proteins form an inner scaffold for the deposition on the core of the surface layer of VP7. VP3 also encapsidates and interacts with the three minor proteins. The BTV VP3 protein consists of 901 amino acids and has a sequence that is a highly conserved among BTV serotypes and other orbiviruses (e.g., epizootic hemorrhagic disease virus and African horse sickness virus). To locate sites of interaction between VP3 and the other structural proteins, we have analyzed the effects of a number of VP3 deletion mutants representing conserved regions of the protein, using as an assay the formation of core-like particles (CLPs) expressed by recombinant baculoviruses. Five of the VP3 deletion mutants interacted with the coexpressed VP7 and made CLPs. These CLPs also incorporated the three minor proteins. One mutant, lacking VP3 amino acid residues 499 to 508, failed to make CLPs. Further mutational analyses have demonstrated that a methionine at residue 500 of VP3 and an arginine at residue 502 were both required for CLP formation.  相似文献   

14.
A monoclonal antibody (MAb) specific for the bluetongue virus (BTV) group specific antigen (VP7) was characterized for its reactivity with purified virus and recombinant BTV VP7 (rVP7) protein and its suitability for use in the sandwich ELISA.The MAb,designated as 5B5 was specific to VP7 and belongs to IgG2a subclass and was selected for the development of the sELISA in this study.The MAb had a titer of 1:25 with BTV and 1:2 with the rVP7 protein.The sELISA is based on capturing of BTV antigen with VP7 spec...  相似文献   

15.
群特异性蓝舌病病毒单克隆抗体的制备和鉴定   总被引:1,自引:0,他引:1  
目的:制备群特异性抗蓝舌病病毒(BTV)单克隆抗体,并对其特性进行鉴定,为建立检测BTV抗原及抗体的ELISA方法奠定基础。方法:用纯化的BTV颗粒为免疫抗原免疫BALB/c鼠,以大肠杆菌表达的VP7蛋白作为筛选抗原,用间接ELISA法筛选杂交瘤细胞株;选取抗体效价最高的一株制备BTV单克隆抗体,以该抗体为捕获抗体与8种不同血清型BTV进行ELISA反应,结果与细胞病变反应进行比对;以该抗体为竞争抗体,与12种不同血清型绵羊BTV抗血清进行竞争ELISA反应,并将结果与参比c-ELISA试剂盒结果进行比对。结果:筛选出5株稳定分泌BTV单克隆抗体的杂交瘤细胞株,并选其中一株(3E2)制备了高纯度的单克隆抗体;该单抗用于检测不同血清型BTV,与细胞病变反应结果完全相符;用于检测不同血清型绵羊BTV抗血清,其结果与参比c-ELISA试剂盒符合率为100%,与鹿流行性出血热病毒抗原和抗体均无交叉反应。结论:制备的BTV单克隆抗体具有良好的群特异性,可用于检测不同血清型BTV抗原及BTV抗体。  相似文献   

16.
Bluetongue virus (BTV) is an economically important Orbivirus transmitted by biting midges to domestic and wild ruminants. The need for new vaccines has been highlighted by the occurrence of repeated outbreaks caused by different BTV serotypes since 1998. The major group-reactive antigen of BTV, VP7, is conserved in the 26 serotypes described so far, and its role in the induction of protective immunity has been proposed. Viral-based vectors as antigen delivery systems display considerable promise as veterinary vaccine candidates. In this paper we have evaluated the capacity of the BTV-2 serotype VP7 core protein expressed by either a non-replicative canine adenovirus type 2 (Cav-VP7 R0) or a leporipoxvirus (SG33-VP7), to induce immune responses in sheep. Humoral responses were elicited against VP7 in almost all animals that received the recombinant vectors. Both Cav-VP7 R0 and SG33-VP7 stimulated an antigen-specific CD4+ response and Cav-VP7 R0 stimulated substantial proliferation of antigen-specific CD8+ lymphocytes. Encouraged by the results obtained with the Cav-VP7 R0 vaccine vector, immunized animals were challenged with either the homologous BTV-2 or the heterologous BTV-8 serotype and viral burden in plasma was followed by real-time RT-PCR. The immune responses triggered by Cav-VP7 R0 were insufficient to afford protective immunity against BTV infection, despite partial protection obtained against homologous challenge. This work underscores the need to further characterize the role of BTV proteins in cross-protective immunity.  相似文献   

17.
Twenty five serotypes of Bluetongue virus (BTV) have been identified worldwide. Rapid and reliable methods of virus universal detection are essential for fighting against bluetongue (BT). We have therefore developed and evaluated a pair of primers which can detect various serotypes of BTV by RT-PCR. Analysis of the viral protein 7 (VP7) and the non-structural protein (NS1) gene from different serotypes of BTV by DNAstar showed that the 5' end of the NS1 gene is the most conserved region. The primer pairs (P1 and P2) were designed based on the highly conserved region of NS1. The novel primers were evaluated by detecting BTV serotypes 1, 3, 5, 8, 10, 11, 21 and 22. The specificity of the primers was estimated by comparing to gene sequences of viruses published in GenBank, and further assessed by detecting BTV serotype 1-12 and Epizootic hemorrhagic disease virus (EHDV) serotype 1-4. The sensitivity and repeatability of PCR with the novel primers were evaluated by successfully detecting the recombinant plasmid pGEM-T121 containing the diagnosed nucleotide sequence. Our results suggest that these unique primers can be used in high throughout and universal detection of the NS1 gene from various BTV serotypes.  相似文献   

18.
Twenty five serotypes of Bluetongue virus (BTV) have been identified worldwide. Rapid and reliable methods of virus universal detection are essential for fighting against bluetongue (BT). We have therefore developed and evaluated a pair of primers which can detect various serotypes of BTV by RT-PCR. Analysis of the viral protein 7 (VP7) and the non-structural protein (NS1) gene from different serotypes of BTV by DNAstar showed that the 5'end of the NS1 gene is the most conserved region. The primer pairs (P1 and P2) were designed based on the highly conserved region of NS 1. The novel primers were evaluated by detecting BTV serotypes 1, 3, 5, 8, 10, 11, 21 and 22. The specificity of the primers was estimated by comparing to gene sequences of viruses published in GenBank, and further assessed by detecting BTV serotype 1-12 and Epizootic hemorrhagic disease virus (EHDV) serotype 1-4. The sensitivity and repeatability of PCR with the novel primers were evaluated by successfully detecting the recombinant plasmid pGEM-T121 containing the diagnosed nucleotide sequence. Our results suggest that these unique primers can be used in high throughout and universal detection of the NS1 gene from various BTV serotypes  相似文献   

19.
Hassan SS  Roy P 《Journal of virology》1999,73(12):9832-9842
Segment 2 of bluetongue virus (BTV) serotype 10, which encodes the outer capsid protein VP2, was tagged with the S-peptide fragment of RNase A and expressed by a recombinant baculovirus. The recombinant protein was subsequently purified to homogeneity by virtue of the S tag, and the oligomeric nature of the purified protein was determined. The data obtained indicated that the majority of the protein forms a dimer and, to a lesser extent, some trimer. The recombinant protein was used to determine various biological functions of VP2. The purified VP2 was shown to have virus hemagglutinin activity and was antigenically indistinguishable from the VP2 of the virion. Whether VP2 is responsible for BTV entry into permissive cells was subsequently assessed by cell surface attachment and internalization studies with an immunofluorescence assay system. The results demonstrated that VP2 alone is responsible for virus entry into mammalian cells. By competition assay, it appeared that both VP2 and the BTV virion attached to the same cell surface molecule(s). The purified VP2 also had a strong affinity for binding to glycophorin A, a sialoglycoprotein component of erythrocytes, indicating that VP2 may be responsible for BTV transmission by the Culicoides vector to vertebrate hosts during blood feeding. Further, by various enzymatic treatments of BTV-permissive L929 cells, preliminary data have been obtained which indicated that the BTV receptor molecule(s) is likely to be a glycoprotein and that either the protein moiety of the glycoprotein or a second protein molecule could also serve as a coreceptor for BTV infection.  相似文献   

20.
T Urakawa  P Roy 《Journal of virology》1988,62(11):3919-3927
Bluetongue virus (BTV) forms tubules in mammalian cells. These tubules appear to be composed of only one type of protein, NS1, a major nonstructural protein of the virus. To obtain direct evidence for the origin of the tubules, the complete M6 gene of BTV serotype 10 was inserted into the baculovirus transfer vector pAcYM1, so that it was under the control of the polyhedrin promoter of Autographa californica nuclear polyhedrosis virus. After cotransfection of Spodoptera frugiperda cells with wild-type A. californica nuclear polyhedrosis virus DNA in the presence of recombinant transfer vector DNA, polyhedrin-negative baculoviruses were recovered. When S. frugiperda cells were infected with one of the derived recombinant viruses, a protein similar in size and antigenic properties to the authentic BTV NS1 protein was made (representing ca. 50% of the stained cellular proteins). The protein reacted with BTV antibody and formed numerous tubular structures in the cytoplasm of S. frugiperda cells. The tubular structures have been purified to homogeneity from infected-cell extracts by gradient centrifugation. By enzyme-linked immunosorbent assay, the recombinant virus antigen has been used to identify antibodies to five United States BTV serotypes in infected sheep sera, indicating the potentiality of the expressed protein as a group-reactive antigen in the diagnosis of BTV infections.  相似文献   

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