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1.
目的:评价轮状病毒(RV)VP4两个抗原表位插入VP6载体蛋白同一位点所表达的重组嵌合蛋白免疫学性质及在研制嵌合蛋白疫苗中的意义。方法:采用分子克隆和基因重组技术将RV VP4的两个抗原表位插入到VP6载体蛋白同一位点上,构建重组抗原表达质粒,表达携带不同抗原表位的重组嵌合蛋白,用Western blot和中和试验分析重组嵌合蛋白的抗原反应性和免疫原性。结果:成功构建了两个嵌合蛋白表达质粒,并在大肠杆菌中高效表达;表达的嵌合蛋白可与相应抗体特异性反应;可诱导豚鼠产生特异性血清抗体;抗嵌合蛋白血清抗体可特异性识别载体蛋白VP6F,Wa株病毒的VP6和VP4蛋白,可中和Wa株病毒在MA104细胞上的感染性;结果表明,所构建和表达的两个以VP6为载体的VP4抗原表位嵌合蛋白具有较高抗原反应性和免疫原性;嵌合蛋白携带的VP4抗原表位具有增强载体蛋白免疫原性作用;为研制新型RV重组蛋白疫苗的奠定了较好的基础。  相似文献   

2.
为探索利用重组腺病毒表达轮状病毒的结构抗原以制备轮状病毒基因工程疫苗的可行性,构建了一株可表达A组轮状病毒主要中和抗原VP7的重组腺病毒AdEasyCVP7.AdEasyCVP7感染293细胞后,RT-PCR证明VP7基因有转,Western blotting试验可检测到VP7的表达。随后,用AdEasyCVP7通过灌胃和滴鼻两种不同途径免疫小鼠,并对免疫后小鼠的血清抗体和粘膜抗体进行了比较。初次免疫后,两组小鼠均有应答,但血清抗体滴度及阳转率不同。再次免疫后,滴鼻组小鼠显示出明显的加强效果。对肺灌洗液中的sIgA及肺、肠粘膜组织匀浆中的IgA进行检测发现滴鼻组的免疫学效果明显优于灌胃组。对血清中和抗体的检测表明,初次和再次免疫后,两组小鼠血清中均有中和抗体产生。该研究为轮状病毒基因工程疫苗的免疫方案、免疫途径及免疫保护作用等的进一步研究奠定了基础。  相似文献   

3.
目的:用免疫荧光法快速检测原核和真核细胞中表达的轮状病毒(RV)外壳蛋白VP4。方法:以抗VP4的抗体为一抗、FITC标记的羊抗豚鼠IgG为二抗,用免疫荧光方法检测在大肠杆菌BL21(DE3)中重组表达的同源RVVP4;检测SA11或Wa株RV感染MA104细胞后不同时间段病毒VP4的合成及其在感染细胞中的分布情况。结果:用免疫荧光法可直接检测到原核细胞中表达的外源蛋白,也可检测到病毒蛋白在真核细胞中的分布情况。结论:免疫荧光法可特异、方便、快速地检测RV VP4在原核和真核细胞中的表达;来源于RV TB—Chen株的VP4抗体可特异性识别同源病毒VP4,交叉识别SA11或Wa株的VP4。  相似文献   

4.
A组人轮状病毒VP6基因克隆及在大肠杆菌中的高效表达   总被引:6,自引:2,他引:4  
轮状病毒(rotavirus RV) 结构蛋白VP6位于病毒三层衣壳结构的中间层,在病毒粒子的形成过程中起重要的作用。从临床样品中分离的人轮状病毒TB-Chen株VP6基因通过RT-PCR得到扩增产物。以pET作为表达载体,将VP6蛋白编码基因序列插入到质粒pET中成功构建原核表达质粒pET-VP6。实验表明,带有pET-VP6质粒的大肠杆菌BL21(DE3)可以高效表达目的蛋白VP6,重组表达产物VP6占菌体总蛋白的27.4%, 其分子量约为45 kDa,并且能被豚鼠抗SA11血清抗体识别(Western blot)。这一结果为进一步研究VP6的结构和功能奠定了重要的物质基础。  相似文献   

5.
从北京腹泻婴儿粪便提取的轮状病毒(rotavirus,RV)(T114株)的RNA中,克隆到轮状病毒结构蛋白基因vp4,vp6和vp7的全长cDNA,对它们编码的蛋白质序列和可能的抗原表位肽进行了预测,选择了RV主要抗原蛋白VP7、VP6和VP4的4个抗原表位肽,通过人工合成DNA的方式将这些抗原表位肽基因串联融合成一个阅读框RME(rotavirus multipleepitopes,RME)并构建原核表达载体.大肠杆菌表达的RME在ELISA反应中可被RV多克隆抗体识别,纯化的RME蛋白注射免疫小鼠可诱导特异性免疫应答,产生高滴度的同源氨基酸序列特异抗体和人RV抗体,其中针对RME的IgG抗体滴度达到l∶40 000,针对单个抗原表位EV7、EV6和EV4的IgG抗体滴度达l∶10 000~l∶20 000,针对RV Wa株的IgG抗体滴度较低为l∶2 500,但能特异地中和该病毒对MAC145细胞的侵染.上述结果为新型RV基因工程疫苗的研发提供了论据和基础.  相似文献   

6.
[目的]研究DHV VP1基因在大肠杆菌中的表达,并以纯化的重组蛋白为抗原建立鸭病毒性肝炎抗体检测ELISA方法.[方法]采用RT-PCR技术,扩增VP1基因,与Pmd18-T载体进行连接,构建DHV VP1基因克隆重组质粒.然后定向插入到Pet-32a( )表达载体,筛选原核表达载体Pet-32a-VP1,进行ITPG诱导表达分析.以纯化的重组蛋白为抗原建立间接ELISA方法并初步应用于临床.[结果]DHV VP1基因可在大肠杆菌中稳定、高效地表达.Western blot检测表明,表达的重组蛋白能与鸭肝炎阳性血清发生特异性反应.确定间接ELISA方法的抗原最佳包被浓度为5 ug/孔,血清最佳稀释度为1:100,临界值为OD450值≥0.302,建立的ELISA方法具有较好的敏感性、特异性和重复性.通过对80份血清样品的检测表明,该方法与中和试验的符合率为97.5%,初步临床应用结果表明该方法可用于雏鸭母源抗体和免疫后抗体的消长变化的检测.[结论]以大肠杆菌表达的DHV VP1重组蛋白为抗原建立的间接ELISA方法可用于鸭病毒性肝炎抗体的检测.  相似文献   

7.
目的:评价以轮状病毒(RV)重组VP6蛋白为载体插入Ⅱ型脊髓灰质炎病毒(PV2)VP1蛋白上的1个抗原表位构建而成的嵌合蛋白的体外免疫学性质。 方法:采用分子克隆和基因重组技术将PV2抗原表位插入到RV载体蛋白上,在大肠杆菌中表达并用SDS-PAGE确认表达产物,再通过动物免疫、Western blot、免疫荧光和病毒血清抗体中和试验分析嵌合蛋白的免疫学性质。结果:成功构建了以VP6为载体的PV2抗原表位嵌合蛋白6F/PV2N1,并且在E.coli系统中高效表达,嵌合蛋白免疫的豚鼠血清抗体对RV和PV2具备较好的中和活性。结论:以RV VP6为载体构建的嵌合蛋白具有较好的免疫原性,免疫豚鼠产生血清抗体可中和RV和PV2在体外细胞上的感染;进一步为研发RV/PV2嵌合疫苗提供了较好的基础。  相似文献   

8.
轮状病毒是引起婴幼儿腹泻的主要病原,VP4是RV重要的抗原蛋白,在早期病毒与细胞黏附过程中发挥重要作用,包括受体结合和细胞渗透。在细胞黏附过程中,VP4易被切割成VP5*和VP8*两个片段并以此增强病毒感染性。为了深入研究VP5*和VP8*的免疫学性质,进一步评价其应用前景,本研究从TB-Chen株RV基因组中编码VP4蛋白基因上克隆了VP5*和VP8*开放读码框核苷酸序列,构建了表达质粒,在原核大肠杆菌系统中重组表达了VP5*和VP8*蛋白,进一步分析了它们的免疫学性质。结果显示,VP5*和VP8*可在E.coli中高效表达,重组蛋白VP5* (rVP5*)和VP8* (rVP8*)可诱导免疫豚鼠产生特异性血清抗体,这些抗体可特异性识别自身蛋白(rVP5*或rVP8*),可识别来自的TB-Chen株重组VP4蛋白,并可识别SA11和Wa感染的MA104细胞中合成的病毒VP4蛋白。这些结果表明,rVP5*和rVP8*蛋白具有较高的免疫原性,抗rVP5*和抗rVP8*的抗体具有高度特异性和交叉反应性。  相似文献   

9.
猪轮状病毒vp4基因的克隆及其在昆虫细胞中的表达   总被引:4,自引:0,他引:4  
本研究扩增猪轮状病毒中国分离株JL94株VP4蛋白主要抗原编码区基因(1-756 bp),将测序结果与国外分离株进行比较;将该基因片段同载体pMel BacA连接后,与杆状病毒DNA共转染入昆虫细胞Sf9,经蚀斑筛选纯化重组病毒并再感染Sf9细胞获得vp4基因的表达,对表达的VP4蛋白进行Western blot分析和血清中和抗体试验.结果表明JL94株VP4主要抗原编码区基因与国外分离株CRW-8株、Gottfried株该基因片段氨基酸同源性分别为96.43%和67%,说明JL94株与CRW-8株属同一VP4血清型,而与Gottfried株属不同血清型.JL94株VP4主要抗原编码区氨基酸最大变异处位于aa81-aa207.vp4基因在昆虫细胞中表达量占细胞总蛋白的20%,Western Blot证实表达蛋白有良好的生物学活性.所表达的蛋白免疫小鼠产生中和抗体,阻断JL94在MA104细胞上引起的细胞病变.  相似文献   

10.
A组人轮状病毒NSP2基因的克隆、表达及免疫学性质研究   总被引:1,自引:0,他引:1  
轮状病毒非结构蛋白NSP2在病毒基因组复制过程中起重要作用。在原核系统中重组表达了来自中国的第一株全基因组被克隆和研究了的轮状病毒NSP2,并进一步对其免疫学性质进行了研究。结果显示,在大肠杆菌中能够高效表达重组NSP2蛋白,而且该蛋白能够诱发豚鼠产生特异性抗体。Western blot和免疫荧光检测表明所得抗体不仅能与该重组NSP2蛋白发生特异性反应,而且可以与轮状病毒SA11株或Wa株感染的MA104细胞中表达的NSP2发生反应。以上这些结果为进一步研究该重组NSP2蛋白的结构、功能及免疫学性质奠定了基础.  相似文献   

11.
Thanks to their strong immunostimulating properties and safety for humans, plant viruses represent an appropriate basis for the design of novel vaccines. The coat protein of Alternanthera mosaic virus can form virus-like particles that are stable under physiological conditions and have adjuvant properties. This work presents a recombinant human rotavirus A antigen based on the epitope of rotavirus structural protein VP6, using Alternanthera mosaic virus coat protein as a carrier. An expression vector containing the gene of Alternanthera mosaic virus (MU strain) coat protein fused to the epitope of rotavirus protein VP6 was designed. Immunoblot analysis showed that the chimeric protein was effectively recognized by commercial polyclonal antibodies to rotavirus and therefore is a suitable candidate for development of a vaccine prototype. Interaction of the chimeric recombinant protein with the native coat protein of Alternanthera mosaic virus and its RNA resulted in the formation of ribonucleoprotein complexes that were recognized by anti-rotavirus antibodies.  相似文献   

12.
VP7 of group A rotavirus(RVA) contains major neutralizing epitopes. Using the antigenic protein VP6 as the vector, chimeric proteins carrying foreign epitopes have been shown to possess good immunoreactivity and immunogenicity. In the present study, using modified VP6 as the vector,three chimeric proteins carrying epitopes derived from VP7 of RVA were constructed. The results showed that the chimeric proteins reacted with anti-VP6 and with SA11 and Wa virus strains.Antibodies from guinea pigs inoculated with the chimeric proteins recognized VP6 and VP7 of RVA and protected mammalian cells from SA11 and Wa infection in vitro. The neutralizing activities of the antibodies against the chimeric proteins were significantly higher than those against the vector protein VP6 F. Thus, development of chimeric vaccines carrying VP7 epitopes using VP6 as a vector could be a promising alternative to enhance immunization against RVAs.  相似文献   

13.
Transgenic tomato plants expressing the gene of a chimeric protein (HAV VP1-Fc) consisting of human hepatitis A virus (HAV) VP1 and an Fc antibody fragment have been obtained. Recombinant VP1-Fc protein with a molecular mass of approximately 68 kDa was purified from transgenic tomato plants using Protein A Sepharose affinity chromatography. The recombinant protein elicited production of specific IgG antibodies in the serum after intraperitoneal immunization of BALB/c mice. The antibodies produced by mice against transgenic plant-derived recombinant VP1-Fc most likely recognize epitopes in the HAV viral antigen. Following vaccination with recombinant VP1-Fc protein, expression of IFN-γ and IL-4 were increased in splenocytes at the time of sacrifice. Our findings indicate that transgenic tomato plants can provide a useful system for the production of HAV antigens.  相似文献   

14.
We describe the expression and immunogenicity of a recombinant chimeric protein (HAV VP1-Fc) consisting of human hepatitis A virus VP1 and an Fc antibody fragment using a replicating vector based on Beet curly top virus (BCTV) in Agrobacterium-infiltrated Nicotiana benthamiana leaves. Recombinant HAV VP1-Fc was expressed with a molecular mass of approximately 68?kDa. Recombinant HAV VP1-Fc, purified using Protein A Sepharose affinity chromatography, elicited production of specific IgG antibodies in the serum after intraperitoneal immunization. Following vaccination with recombinant HAV VP1-Fc protein, expressions of IFN-γ and IL-4 were increased in splenocytes at the time of sacrifice. Recombinant VP1-Fc from infiltrated tobacco plants can be used as an effective experimental immunogen for research into vaccine development.  相似文献   

15.
Bluetongue virus (BTV) is an arthropod-borne virus transmitted by Culicoides species to vertebrate hosts. The double-capsid virion is infectious for Culicoides vector and mammalian cells, while the inner core is infectious for only Culicoides-derived cells. The recently determined crystal structure of the BTV core has revealed an accessible RGD motif between amino acids 168 to 170 of the outer core protein VP7, whose structure and position would be consistent with a role in cell entry. To delineate the biological role of the RGD sequence within VP7, we have introduced point mutations in the RGD tripeptide and generated three recombinant baculoviruses, each expressing a mutant derivative of VP7 (VP7-AGD, VP7-ADL, and VP7-AGQ). Each expressed mutant protein was purified, and the oligomeric nature and secondary structure of each was compared with those of the wild-type (wt) VP7 molecule. Each mutant VP7 protein was used to generate empty core-like particles (CLPs) and were shown to be biochemically and morphologically identical to those of wt CLPs. However, when mutant CLPs were used in an in vitro cell binding assay, each showed reduced binding to Culicoides cells compared to wt CLPs. Twelve monoclonal antibodies (MAbs) was generated using purified VP7 or CLPs as a source of antigen and were utilized for epitope mapping with available chimeric VP7 molecules and the RGD mutants. Several MAbs bound to the RGD motif on the core, as shown by immunogold labeling and cryoelectron microscopy. RGD-specific MAb H1.5, but not those directed to other regions of the core, inhibited the binding activity of CLPs to the Culicoides cell surface. Together, these data indicate that the RGD motif present on BTV VP7 is responsible for Culicoides cell binding activity.  相似文献   

16.
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/Thio TOPO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   

17.
Chimeric virus-like particles (VLPs) of infectious bursal disease virus (IBDV) were produced by coinfecting Spodoptera frugiperda (Sf-9) insect cells with two recombinant baculoviruses, vIBD-7 and vEDLH-22. vIBD-7 encodes VP2, VP3, and VP4 of the IBDV structural proteins. vEDLH-22 encodes VP2 with five histidine residues at the carboxy-terminus (VP2H). Coinfection produced hybrid VLPs composed of VP2, VP2H, and VP3. The additional histidine residues on VP2H enabled the efficient purification of VLPs based on immobilized metal affinity chromatography (IMAC). These results demonstrated that the VLPs formed are comprised of chimeric subunits with attached affinity ligands, and further, that sufficient His5 ligand was available for binding to the IMAC metal-chelating resin. Additionally, these novel particles were fully characterized for antigenicity by a series of monoclonal antibodies, and appeared identical to the two wild-type IBDV strains contributing subunits to the chimeric VLP. IMAC purification provides a promising low-cost and simple scheme to purify VLPs as vaccines.  相似文献   

18.
Recombinant rotavirus (RV) with cDNA-derived chimeric VP4 was generated using recently developed reverse genetics for RV. The rescued virus, KU//rVP4(SA11)-II(DS-1), contains SA11 (simian RV strain, G3P[2])-based VP4, in which a cross-reactive neutralization epitope (amino acids 381 to 401) on VP5* is replaced by the corresponding sequence of a different P-type DS-1 (human RV strain, G2P[4]). Serological analyses with a panel of anti-VP4- and -VP7-neutralizing monoclonal antibodies revealed that the rescued virus carries a novel antigenic mosaic of cross-reactive neutralization epitopes on its VP4 surface. This is the first report of the generation of a recombinant RV with artificial amino acid substitutions.  相似文献   

19.
Previously, we have determined the nucleotide and amino acid sequences of the variable domains of three mouse monoclonal antibodies specific to the individual epitopes of the Ebola virus glycoprotein: GPE118 (IgG), GPE325 (IgM) and GPE534 (IgG) [1]. In the present paper, chimeric Fab fragments of Fab118, Fab325, and Fab534 antibodies were obtained based on the variable domains of murine antibodies by attaching CH1 and CL constant regions of human kappa-IgG1 to them. The recombinant chimeric Fab fragments were synthesized in the heterologous expression system Escherichia coli, isolated and purified using metal chelate affinity chromatography. The immunochemical properties of the obtained Fab fragments were studied by immunoblotting techniques as well as indirect and competitive ELISA using recombinant Ebola virus proteins: EBOV rGPdTM (recombinant glycoprotein of Ebola hemorrhagic fever virus without the transmembrane domain), NP (nucleoprotein) and VP40 (structural protein). The identity of recombinant chimeric Fab fragments, as well as their specificity to the recombinant glycoprotein of Ebola hemorrhagic fever virus (EBOV GP) was proved. The results of indirect ELISA evidence the absence of immunological cross-reactivity to NP and VP40 proteins of Ebola virus. The dissociation constants of the antigen-antibody complex K d equal to 5.0, 1.0 and 1.0 nM for Fab118, Fab325 and Fab534, respectively, were determined; they indicate high affinity of the obtained experimental samples to EBOV GP. The epitope specificity of Fab fragments was studied using a panel of commercial neutralizing antibodies. It was found that all studied antibodies to EBOV GP are targeted to different epitopes, while the epitopes of the recombinant chimeric Fab fragments and original murine monoclonal antibodies (mAbs) coincide. All the obtained and studied mAbs to EBOV GP are specific to epitopes that coincide or overlap the epitopes of three commercial neutralizing mAbs to Ebola virus: epitopes Fab118 and Fab325 overlap the epitope of the known commercial mAb h13F6; Fab325 epitope also overlaps mAb c6D8 epitope; Fab534 epitope is located near mAb KZ52 conformational epitope, in the formation of which amino acid residues of GP1 and GP2 domains of EBOV GP are involved.  相似文献   

20.
The glycoprotein VP7, the major serotype antigen of rotaviruses, is localized to the endoplasmic reticulum (ER) of the cell, where it is retained as a membrane-associated protein before assembly into mature virus particles. Wild-type VP7 expressed by a recombinant vaccinia virus was also located internally and was poorly antigenic. Using recombinant techniques, a correctly processed, secreted form of VP7 (S.C. Stirzaker and G.W. Both, Cell 56:741-747, 1989) was modified by addition to its C terminus of the membrane anchor and cytoplasmic domains from the influenza virus hemagglutinin. The hybrid protein was directed to the surface of cells, where it was anchored in the plasma membrane. When expressed in mice and rabbits by a recombinant vaccinia virus, the surface-anchored antigen stimulated a level of rotavirus-specific antibodies that was greater than 100-fold above the level induced by wild-type VP7. T-cell responses to the novel antigen were also elevated in comparison with the wild-type, intracellular protein. Cell surface anchoring may provide a strategy to increase the immunogenicity of intracellular antigens from other parasites and viruses.  相似文献   

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