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1.
VP1蛋白是口蹄疫病毒(Foot-and-Mouth Disease Virus,FMDV)诱导机体产生抗病毒感染免疫的主要蛋白,含有病毒的若干中和表位.本研究设计和合成了由Asia Ⅰ型FMDV VP1蛋白136~160aa和198~211aa两个表位组成的重复串联表位的编码基因,并克隆了羊IgG重链恒定区编码基因.利用BamH I、EcoR I和Xho I位点将2个基因片段依次克隆到pPROExHTb载体,构建成重组质粒pPRO-FshIgG,将其转化大肠杆菌BL21(DE3)感受态细胞,以IPTG诱导表达得到融合蛋白FshIgG.100μg FshIgG蛋白免疫豚鼠后刺激豚鼠产生了高效价的FMDV中和抗体,而且使这些免疫豚鼠在用200 ID_(50)剂量FMDV攻击时得到了完全保护.由此证明,羊IgG重链恒定区蛋白能够作为FMDV表位肽的载体,而融合蛋白FshIgG可成为一种口蹄疫表位疫苗候选物用于口蹄疫的预防.  相似文献   

2.
【目的】构建一株含3A非结构蛋白104–115位氨基酸缺失的口蹄疫A型标记病毒,分析其生物学特性和发展标记疫苗的潜力。【方法】采用融合PCR技术,在当前流行毒株A/Sea-97/CHA/2014全长感染性克隆p QAHN中引入3A104–115位氨基酸的缺失,构建全长重组质粒。全长质粒经NotI线化后转染表达T7RNA聚合酶的稳定细胞系,拯救标记病毒。RT-PCR、序列分析、间接免疫荧光和Western blotting鉴定标记病毒。噬斑表型和一步生长曲线分析标记病毒的生物学特性,并用实验室开发的针对3A优势表位(AEKNPLE)的阻断ELISA方法分析其区分亲本和标记病毒感染的动物。【结果】成功拯救到一株含3A 104–115位氨基酸缺失的口蹄疫A型标记病毒,3A表位的缺失没有影响标记病毒的噬斑表型和一步生长曲线。3A单抗阻断ELISA可以明显区分标记病毒和亲本病毒感染的动物。【结论】本研究构建的3A蛋白104–115位氨基酸缺失的标记病毒可以作为发展口蹄疫鉴别诊断疫苗的候选毒株,用于我国未来口蹄疫A型的有效防控。  相似文献   

3.
VP1蛋白是口蹄疫病毒(Foot-and-Mouth Disease Virus,FMDV)诱导机体产生抗病毒感染免疫的主要蛋白,含有病毒的若干中和表位。本研究设计和合成了由AsiaI型FMDVVP1蛋白136~160aa和198~211aa两个表位组成的重复串联表位的编码基因,并克隆了羊IgG重链恒定区编码基因。利用BamHI、EcoRI和XhoI位点将2个基因片段依次克隆到pPROExHTb载体,构建成重组质粒pPRO-FshIgG,将其转化大肠杆菌BL21(DE3)感受态细胞,以IPTG诱导表达得到融合蛋白FshIgG。100μgFshIgG蛋白免疫豚鼠后刺激豚鼠产生了高效价的FMDV中和抗体,而且使这些免疫豚鼠在用200ID50剂量FMDV攻击时得到了完全保护。由此证明,羊IgG重链恒定区蛋白能够作为FMDV表位肽的载体,而融合蛋白FshIgG可成为一种口蹄疫表位疫苗候选物用于口蹄疫的预防。  相似文献   

4.
口蹄疫是一种一类传染病,其病原为口蹄疫病毒(FMDV)。FMDV衣壳蛋白VP1含有中和性抗原表位。本研究合成了编码O型FMDVVP1蛋白中和性抗原表位的双拷贝DNA片段,将其克隆于原核表达载体pGEX-6p-1中,以获得的重组质粒转化大肠杆菌,然后用IPTG进行诱导,表达出了大小约为33kDa的GST融合重组蛋白,Westernblotting分析证实,重组蛋白可以被O型FMDV抗血清所识别。用纯化的重组蛋白免疫豚鼠制备高免血清,ELISA检测表明,免疫后的豚鼠血清抗体滴度可达1∶20560以上。本研究提供了一种制备口蹄疫抗原和高免血清的新方法。  相似文献   

5.
口蹄疫病毒三价复合多表位佐剂DNA疫苗构建及其免疫原性   总被引:4,自引:0,他引:4  
以O型、A型口蹄疫病毒(FMDV)结构蛋白VP1全基因和AsiaI型FMDV两个基因拓扑型的结构蛋白VP1基因上的5个抗原表位基因作为主要免疫原基因,以来源于非结构蛋白3ABC和结构蛋白VP4上的3个Th2细胞表位基因作为辅助基因,构建了O型、A型和Asia1型FMDV复合多表位基因工程疫苗表达盒OAAT,在此基础上,以金黄色葡萄球菌肠毒素A(SEA)为基因佐剂,通过分子设计构建了SEA与OAAT融合表达基因。将构建好的表达盒OAAT与SEA融合表达基因克隆至真核表达载体PVAX1PCMV启动子下游,构建了口蹄疫三价基因佐剂DNA疫苗pEA。经Western blotting和IFA检测,目的蛋白在Hela细胞中获得正确表达。小鼠免疫实验表明,pA和pEA免疫组的血清抗体均能分别与O型、A型和AsiaI抗原反应,与对照组相比差异较显著,且pEA免疫组和灭活疫苗免疫组抗体水平均显著高于pA免疫组;同时pA和pEA免疫小鼠细胞因子IL-2、IFN-γ、IL-4和IL-10较对照组显著提高,且pEA免疫组的IL-2、IFN-γ和IL-4水平明显高于pA免疫组。用O/NY00和Asia1/YNBS/58株FMDV进行...  相似文献   

6.
A型口蹄疫合成肽疫苗的免疫效力评价   总被引:1,自引:0,他引:1  
【目的】研制A型口蹄疫(foot-and-mouth disease,FMD)新型合成肽疫苗,为畜牧业减少经济损失。【方法】应用两种含有口蹄疫病毒(foot-and-mouth disease virus,FMDV)AF/72株VP1[131-159]、VP4[20-35]、3A[21-35]和3B[29-42]4个抗原表位的合成肽联合CpG寡聚脱氧核苷酸(5’-TCGCGAACGTTCGCCCGATCGTCGGTA-3’)在豚鼠上进行了免疫效力评价。【结果】2.5μg/只的合成肽364能保护4/5的豚鼠免受FMDV AF/72株的攻击,灭活苗组获得完全保护,其他组的保护效力仅为3/5;保护效力最高的两组的外周血CD4+T淋巴细胞含量高达33.7%和36.6%,而其他组不超过27.7%,PBS组仅为18.1%。【结论】本研究筛选出一组免疫效力较好的口蹄疫A型合成肽疫苗,可以作为候选疫苗进行进一步评价。  相似文献   

7.
从GenBank数据库中获得在我国分离的16株口蹄疫病毒全基因组序列,进而运用常规的系统发生方法分析了这16株病毒的同源重组情况,发现5株重组毒株.这些重组病毒主要来源于亚洲Ⅰ型(Asia1)和O型病毒间的重组.这些重组事件的鉴定也表明口蹄疫病毒间的交叉感染在我国比较常见.另外,在我国还出现了由于Asia1型和O型病毒重组后导致病毒血清型发生转化的现象.这些结果解释了我国口蹄疫病毒(FMDV)遗传多样性和抗原多变性的成因,提示了我国在口蹄疫预防、治疗方面所面临的复杂局面.  相似文献   

8.
9.
【目的】利用口蹄疫病毒的反向遗传操作技术,构建含不同外源标签口蹄疫病毒的全长克隆,鉴定口蹄疫病毒结构蛋白VP1容忍不同外源标签的能力。【方法】通过融合PCR技术,在FMDV O/HN/93全长感染性克隆的VP1 G-H环分别引入V5、TC12、KT3、3FLAG外源标签,构建全长质粒。全长质粒经Not I线化后转染表达T7 RNA聚合酶的稳定细胞,拯救重组病毒。RT-PCR、序列测定、间接免疫荧光鉴定病毒,噬斑和一步生长曲线分析重组病毒的生物学特性。【结果】成功拯救到表达V5或KT3表位标签的重组病毒,未能拯救到表达TC12或3×FLAG的重组病毒。V5和KT3表位标签的插入均影响了口蹄疫病毒的复制能力。【结论】重组口蹄疫病毒的成功拯救为未来标记疫苗以及口蹄疫病毒作为表达载体等的研究奠定了基础。  相似文献   

10.
建立共表达猪瘟病毒(Classic swine fever virus,CSFV)E2蛋白主要中和性抗原表位基因的猪繁殖与呼吸综合征病毒(PRRSV)反向遗传操作平台,为进一步研究PRRSV作为病毒载体提供实验数据。本研究在PRRSVHuN4-F112疫苗株感染性分子克隆的基础上,采用突变PCR技术将CSFV E2蛋白的主要中和性抗原表位基因插入HuN4-F112弱毒株PRRSV已鉴定出的两个NSP2蛋白的复制非必需区,经基因片段的克隆、拼接,构建了两株含有CSFV E2蛋白的主要中和性抗原表位基因的感染性PRRSV cDNA克隆psk-HuN4-F112-Δ508-532+E2和psk-HuN4-F112-Δ480-532+E2。用限制性内切酶SwaΙ分别将两株共表达的感染性克隆线性化,之后通过细胞外转录获得病毒RNA,用脂质体法分别将病毒RNA转染BHK-21细胞包装出病毒粒子,再分别将其转接到MARC-145细胞传代拯救出两株病毒。分别对两株拯救病毒进行RT-PCR扩增、酶切和序列分析鉴定。结果表明,两株拯救病毒含有不同于亲本病毒的分子标记(拯救病毒基因组的14 667位因同义突变产生的MluⅠ酶切位点)和插入基因序列。间接免疫荧光试验表明,CSFV E2蛋白主要中和性抗原表位基因均能在两株拯救的PRRSV中表达,且能够在其传代过程中稳定遗传。病毒生长特性结果比较显示两株拯救病毒与亲本病毒在MARC-145细胞上具有相似的增殖特性。本研究构建了两株共表达CSFV E2蛋白主要中和性抗原表位基因的PRRSV感染性克隆并获得了拯救病毒,且外源基因能在拯救病毒中稳定表达,为进一步开发新型PRRSV二联疫苗提供了有效的反向遗传操作平台。  相似文献   

11.
Fang M  Li J  Wang H  Yang M  Zhang Y  Zhou L  Wei H  Yang G  Yu Y  Wei X  Yu Y  Wang L  Wan M 《Biotechnology letters》2012,34(5):839-847
To develop recombinant epitope vaccines against foot-and-mouth disease virus (FMDV), genes coding for six recombinant proteins (rP1–rP6) consisting of different combinations of B cell and T cell epitope from VP1 capsid protein (VP1) of type O FMDV were constructed and the 3D structure of these proteins analyzed. This revealed a surface-exposed RGD sequence of B cell epitopes in all six recombinant proteins as that in VP1 of FMDV and rP1, rP2 and rP4 globally mimicked the backbone conformation of the VP1. rP1, rP2 and rP4 stimulated guinea pigs to produce higher level of neutralizing antibodies capable of protecting suckling mice against FMDV challenge. rP1 stimulated cattle to produce FMDV-neutralizing antibody. The data suggest that an efficient recombinant epitope vaccine against FMDV should share local similarities with the natural VP1 of FMDV.  相似文献   

12.
13.
The successful use of a dendrimeric peptide to protect pigs against challenge with foot-and-mouth disease virus (FMDV), which causes the most devastating animal disease worldwide, is described. Animals were immunized intramuscularly with a peptide containing one copy of a FMDV T-cell epitope and branching out into four copies of a B-cell epitope. The four immunized pigs did not develop significant clinical signs upon FMDV challenge, neither systemic nor mucosal FMDV replication, nor was its transmission to contact control pigs observed. The dendrimeric construction specifically induced high titers of FMDV-neutralizing antibodies and activated FMDV-specific T cells. Interestingly, a potent anti-FMDV immunoglobulin A response (local and systemic) was observed, despite the parenteral administration of the peptide. On the other hand, peptide-immunized animals showed no antibodies specific of FMDV infection, which qualifies the peptide as a potential marker vaccine. Overall, the dendrimeric peptide used elicited an immune response comparable to that found for control FMDV-infected pigs that correlated with a solid protection against FMDV challenge. Dendrimeric designs of this type may hold substantial promise for peptide subunit vaccine development.  相似文献   

14.

Objective

To determine whether the G–H loop of foot-and-mouth disease virus (FMDV) serotype O can function as a target structure to harbour and display serotype Asia1 antigenic epitope at the surface.

Results

Using reverse genetics, FMDV serotype O IND R2/1975 displaying a FMDV serotype Asia1 B cell epitope at the capsid surface was constructed. The epitope-inserted recombinant chimeric virus was genetically stable up to ten serial passages in cell culture and exhibited growth properties similar to the parental serotype O virus. Furthermore, the surface-displayed Asia1 epitope able to react with serotype Asia1 specific antibodies in a competitive ELISA. Importantly, the recombinant chimeric virus showed neutralizing activity to both serotype O and Asia1 polyclonal antibodies.

Conclusion

The capsid protein of FMDV serotype O can effectively display potent epitope of other serotypes, making this an attractive approach for the design of new generation bi-valent FMD vaccines.
  相似文献   

15.
Li  Xin  Meng  Xiuping  Wang  Shengnan  Li  Zhiqin  Yang  Lei  Tu  Liqun  Diao  Wenzhen  Yu  Cheng  Yu  Yongli  Yan  Chaoying  Wang  Liying 《Applied microbiology and biotechnology》2018,102(24):10541-10550

Mixed infection of porcine circovirus type 2 (PCV2) and foot-and-mouth disease virus (FMDV) is devastating to swine populations. To develop an effective vaccine that can protect the pigs from the infection of PCV2 and FMDV, we used the neutralizing B cell epitope region (aa 135–160) of FMDV to replace the regions aa 123–151 and aa 169–194 of the PCV2b Cap protein to generate a recombinant protein designated as Capfb. The Capfb protein was expressed in Escherichia coli system and the purified Capfb protein assembled into virus-like particles (VLPs) through dialysis. The ability of the Capfb protein to induce effective immune response against FMDV and PCV2b was tested in mice and guinea pigs. The results showed that the Capfb-VLPs could elicit anti-PCV2b and anti-FMDV antibody response in mice and guinea pigs without inducing antibodies against decoy epitope. Moreover, the Capfb-VLPs could enhance the percentage and activation of B cells in lymph nodes when the mice were stimulated with inactivated FMDV or PCV2b. These data suggested that the Capfb-VLPs could be an efficacious candidate antigen for developing a novel PCV2b-FMDV bivalent vaccine.

  相似文献   

16.
17.
P Li  X Bai  Y Cao  C Han  Z Lu  P Sun  H Yin  Z Liu 《PloS one》2012,7(7):e41486
Foot-and-mouth disease virus (FMDV) is an aphthovirus that belongs to the Picornaviridae family and causes one of the most important animal diseases worldwide. The capacity of other picornaviruses to express foreign antigens has been extensively reported, however, little is known about FMDV. To explore the potential of FMDV as a viral vector, an 11-amino-acid (aa) HSV epitope and an 8 aa FLAG epitope were introduced into the C-terminal different regions of 3A protein of FMDV full-length infectious cDNA clone. Recombinant viruses expressing the HSV or FLAG epitope were successfully rescued after transfection of both modified constructs. Immunofluorescence assay, Western blot and sequence analysis showed that the recombinant viruses stably maintained the foreign epitopes even after 11 serial passages in BHK-21 cells. The 3A-tagged viruses shared similar plaque phenotypes and replication kinetics to those of the parental virus. In addition, mice experimentally infected with the epitope-tagged viruses could induce tag-specific antibodies. Our results demonstrate that FMDV can be used effectively as a viral vector for the delivery of foreign tags.  相似文献   

18.
【目的】近年来,O型口蹄疫的不断暴发严重危害了我国畜牧业的发展,其病原——O型口蹄疫病毒已演化出3种谱系:中国型猪毒系、泛亚系和缅甸98系。其中中国型猪毒系病毒高度嗜猪,对养猪业危害最大。目前应用的疫苗已不能有效保护中国型猪毒系变异株的流行,这给我国猪口蹄疫的防控带来了极大的困难。为了进一步发展免疫原性好、抗原谱广的猪O型口蹄疫疫苗候选株,本研究以O/HN/93现用疫苗毒株的感染性克隆为骨架,用流行的新猪毒系病毒的部分VP3和VP1基因(主要是替换VP1蛋白上的B-C环和G-H环)替换疫苗毒株的相应部分,构建了嵌合的FMDV全长cDNA克隆。【方法】线化的嵌合全长质粒和表达T7 RNA聚合酶的真核质粒pcDNAT7P共转染BHK-21细胞,体内转录拯救嵌合病毒。【结果】嵌合全长质粒转染BHK-21细胞36h后,出现明显的FMDV致细胞病变效应。对收获的病毒分别用RT-PCR、间接免疫荧光、电子显微镜观察结果证实成功拯救到嵌合的FMDV。拯救的病毒乳鼠致病性试验结果表明该拯救病毒对乳鼠的致病力减弱。该嵌合病毒的成功拯救为研制口蹄疫新型疫苗等奠定了基础。  相似文献   

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