1.The structure and virus-like particle vaccine of the HIV-1 capsid protein.
Xiao-Guang SUN ; Chang-Zheng SONG
Chinese Journal of Biotechnology 2003;19(5):516-520
The HIV-1 capsid protein (CA) plays an essential role in viral core assembly and maturation. Proteolytic cleavage at the MA-CA junction of the retroviral gag polyprotein refolds the amino-terminal end of capsid into a beta-helix structure that is stabilized by a salt bridge between the protein's processed amino-terminus and a conserved acidic residue. The refolded capsid aminoterminus then creates a new CA-CA interface, allowing assembly of the mature capsid core. Recently, researches focus on assembly of CA in vitro and development of CA vaccine. CA vaccine will provide widely immune protection because CA is comparatively conserved. Experiments demonstrate that fusing as few as four matrix residues onto the amino-terminus of capsid redirects protein assembly from cylinder to spheres in vitro. Evaluation of immunogenicity showed that immunization with virus-like particles induced both cellular and neutralizing antibody responses. Furthermore, mucosal administration of virus-like particles effectively induced both mucosal and systemic immune responses. These results indicate that virus-like particles consisting of HIV structural proteins are an attractive vaccine platform for eliciting anti-viral immune responses, especially neutralizing antibody responses. The production of antigens for vaccines in plants indicates that plant-based transgenic expression represents a viable means of producing CA vaccine for the development of HIV vaccine and for use in HIV diagnostic procedures and it has the potential as a safe and cost-effective alternative to traditional production systems.
AIDS Vaccines
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immunology
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Capsid
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immunology
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metabolism
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Capsid Proteins
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genetics
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immunology
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metabolism
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HIV-1
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genetics
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immunology
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metabolism
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Virion
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genetics
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immunology
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metabolism
2.High expression of the foot-and-mouth disease's structural protein P1 in Escherichia coli and analysis of its biology activity.
Xiao-Lan YU ; Shao-Bo XIAO ; Liu-Rong FANG ; Meng-Yu HU ; Lin YAN ; Xiao-Hui DONG ; Huan-Chun CHEN
Chinese Journal of Biotechnology 2005;21(1):163-166
Foot-and-mouth disease virus (FMDV) is the aetiological angent of a highly contagious viral disease. The complete gene encoding the structural protein of FMDV (P1) was subcloned into expression vector pGEX-KG, resulting in the fusion expression plasmid pKG-P1. After transformed into E. coli BL21(DE3) and induced by IPTG, the results of SDS-PAGE showed that the GST-P1 fusion protein was expressed in high level. The molecular weight of the fusion protein wa 110kD and the expressed products were soluble. Western-blotting was performed to confirm that the expressed fusion protein could specifically react with antiserum against FMDV. The fusion proteins were further purified by GST purification kit and an indirect ELISA (P1-ELISA) based on the purified proteins was developed. Comparison between P1-ELISA and the standard indirect haemagglutinin assay showed the two methods had 87 per cent agreement by detecting 864 serum samples, indicating the purified P1 protein was specific as the antigen of indirect P1-ELISA.
Capsid Proteins
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biosynthesis
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genetics
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immunology
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Escherichia coli
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genetics
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metabolism
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Foot-and-Mouth Disease Virus
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genetics
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Recombinant Fusion Proteins
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biosynthesis
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genetics
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immunology
3.Study on the recombinant expression of Hantaan virus protein N and the establishment and application of rNP-IgM direct capture ELISA.
Han-Ping ZHU ; Ping-Ping YAO ; Fang XU ; Jing-Qing WENG ; Rong-Hui XIE ; Qun-Ying LU ; Zhi-Yong ZHU ; Jie YAN
Chinese Journal of Epidemiology 2007;28(7):692-696
OBJECTIVETo clone the gene encoding nucleocapsid protein (NP) of hantavirus strain Z10 (HV-Z10), to construct its prokaryotic expression system as well as to establish a rNP-IgM direct capture ELISA based on HRP-labeled recombinant NP (rNP), in order to detect serum samples of patients suffering from hemorrhagic fever with renal syndrome (HFRS) and to evaluate the effects of detection.
METHODSGene encoding NP of strain HV-Z10 was amplified by PCR and then its prokaryotic expression system pET28a-Z10N-E. coli BL21DE3 was constructed, using routine genetic engineering method. SDS-PAGE was applied to measure the expression of rNP and ion-exchange plus Ni-NTA-affinity chromatography was performed to purify the recombinant product. Western blot assay was used to determine the specific immuno-reactivity of rNP while HRP-labeled rNP-IgM direct capture ELISA was established to detect the serum samples from 95 cases of confirmed HFRS patients. The detection effect was compared with that by routine HV-IgM indirect capture ELISA method.
RESULTSpET28a-Z10N-E. coli BL21DE3 was able to express rNP with high efficiency. The purified rNP only showed a single protein fragment in the gel after SDS-PAGE. HV-IgG could efficiently recognize rNP and hybridize with the recombinant protein. 94.73% (90/95) of HFRS patients' serum samples were positively confirmed by rNP-IgM direct capture ELISA, while a positive rate of 92.63% (88/95) in the same samples was confirmed by HV-IgM indirect capture ELISA. The distributions of A450 values of the serum samples detected by the two IgM capture ELISAs as well as the changes of the A450 mean values from several serum samples with different dilutions were similar.
CONCLUSIONWe successfully constructed a high efficient prokaryotic expression system of NP encoding gene of hantavirus strain HV-Z10. The rNP-IgM direct capture ELISA that established in this study could be used as a new serological test for HFRS diagnosis because of its simplicity, safety, with high sensitivity and specificity.
Blotting, Western ; Capsid Proteins ; genetics ; immunology ; metabolism ; Enzyme-Linked Immunosorbent Assay ; methods ; Humans ; Immunoglobulin M ; immunology ; Recombinant Proteins ; genetics ; immunology ; metabolism ; Viral Core Proteins ; genetics ; immunology ; metabolism
4.Cloning and expression of rotavirus SA11 VP7 and preparation of IgY antibodies against recombinant VP7.
Shi-Hai ZHANG ; Qing-Li LUO ; Yin-Di ZHOU ; Jing LI ; Yuan-Hong XU ; Ji-Long SHEN
Chinese Journal of Preventive Medicine 2009;43(6):526-530
OBJECTIVETo prepare eukaryotic expression of rotavirus (RV) SA11 capsid protein VP7, and to generate and purify yolk immunoglobulin (IgY) antibodies against the recombinant VP7 from Roman hens.
METHODSMA104 cells were infected with the standard SA11 strain and the culture fluid was collected. A DNA fragment of 978 bp encoding SA11 VP7 was obtained by RT-PCR amplification from genomic RNA of RV SA11. The PCR products were ligated to pMD18-T vector following the confirmation by DNA sequencing and sub-cloned into pPICZalphaB. The recombinant pPICZalphaB-SA11 VP7 was transformed into E coli Top10. The plasmids were linearized by digestion of BstXI and transformed into Pichia pastoris X-33 through electroporation by DNA sequencing. The transformants were induced with methanol for expression. The cultural supernatant was subjected to SDS-PAGE and Western blotting. Fusion expression was purified through the column of affinity chromatography. IgY was identified and purified by SDS-PAGE and Western blotting from eggs of Roman hens immunized with recombinant SA11 VP7.
RESULTSThe RNA extracted from the RV culture fluid consisted of 11 bands visualized by silver staining. The expression vector pPICZalphaB-SA11 VP7 was constructed and the fusion protein in Pichia pastoris X-33 was harvested and purified. The recombinant SA11 VP7 with molecular weight of 40 200 was identified by Western blotting. The IgY antibodies against the recombinant SA11 VP7 were produced with a purity of 95 percent and yield of 10.2 mg per egg.
CONCLUSIONThe preparation of IgY antibodies to recombinant SA11 VP7 might lay a foundation for the development of vaccines and diagnostic techniques.
Animals ; Antigens, Viral ; genetics ; immunology ; metabolism ; Capsid Proteins ; genetics ; immunology ; metabolism ; Chickens ; Cloning, Molecular ; Immunoglobulins ; immunology ; isolation & purification ; Recombinant Proteins ; genetics ; immunology ; metabolism
5.Protective efficacy of recombinant rotavirus epitope-based vaccine in mice.
Xiao LIU ; Jia-qi LI ; Xin-yu XIONG ; Yu-na CHEN ; Mei PENG ; Qing DAI ; Yu-ling WEN ; Yuan-ding CHEN
Acta Academiae Medicinae Sinicae 2005;27(2):216-222
OBJECTIVETo evaluate in vivo immunological protective efficacy and safety of expressed recombinant rotavirus epitopes in mice.
METHODSUsing the Flock House virus capsid protein as a vector, three epitopes derived from rotavirus Vp4 amino acid 223-242 [rotavirus epitope A, (REA)], 243-262 [rotavirus epitope B, (REB)], and 234-251 [rotavirus epitope C, (REC)] were genetically engineered on the surface of the vector protein and expressed in pET-3 (E. coli BL21 [DE3]) system into multiple epitopes, REABC, which comprises REA, REB, and REC. Kunming strain mice were inoculated with the recombinant epitopes REABC, and then challenged perorally by cell culture-adapted rotavirus Wa (type G1P1A) and SA11 (type G3P2). Infection syndrome was observed, and virus antigen in stools of mice and serum neutralizing antibody activities were determined and analyzed.
RESULTSThe recombinant epitopes REABC significantly induced rotavirus specific neutralyzing antibodies against WA and SA11, reduced virus reproduction, elicitted immune memory in inoculated mice, and protected inoculated mice from challenge by WA or SA11 (P<0.001).
CONCLUSIONThe recombinant epitopes have high immunological protective efficacy and mild side effects in mice. It may be used as an epitope-based vaccine candidate in human.
Animals ; Antigens, Viral ; immunology ; Capsid ; immunology ; metabolism ; Capsid Proteins ; immunology ; Epitopes ; biosynthesis ; immunology ; Escherichia coli ; genetics ; Female ; Genetic Vectors ; Male ; Mice ; Random Allocation ; Recombinant Proteins ; biosynthesis ; immunology ; Rotavirus ; immunology ; Rotavirus Infections ; immunology ; prevention & control ; Viral Vaccines ; immunology
6.Fusion expression of Escherichia coli heat-labile enterotoxin B subunit gene and foot-and-mouth disease virus type O VP1 gene and immunogenicity analysis.
Runcheng LI ; Xinglong YU ; Xia BAI ; Weijun XIANG ; Meng GE ; Manxiang LI
Chinese Journal of Biotechnology 2009;25(4):560-565
LTB gene fragment was amplified by PCR from plasmid pMDTLT, and a recombinant plasmid pETLTBVP1 was constructed by inserting LTB gene fragment into VP1 gene expression plasmid pETVP1 constructed previously. The recombinant plasmids were transformed into E. coli BL21(DE3) and induced to express by IPTG. The recombinant protein existed in the inclusion body and its molecular weight was about 39 kD proved by SDS-PAGE analysis. Western blotting showed that the fusion protein could be reacted with both anti-FMDV and anti-cholera toxin serum demonstrating the immunoactivity of the fusion protein. Strong immune responses can be induced in mice inoculated with the fusion protein intraperitoneally, and the serum antibody level is higher than that of commercial foot-and-mouth disease vaccines.
Animals
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Antibodies, Viral
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blood
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Bacterial Toxins
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genetics
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immunology
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metabolism
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Capsid Proteins
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genetics
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immunology
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metabolism
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Enterotoxins
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genetics
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immunology
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metabolism
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Escherichia coli
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genetics
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metabolism
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Escherichia coli Proteins
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Female
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Gene Fusion
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genetics
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Mice
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Plasmids
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genetics
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Recombinant Fusion Proteins
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genetics
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immunology
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metabolism
7.Expression, purification and immunogenicity analysis of HPV type 18 virus-like particles from Escherichia coli.
Minghui XIE ; Shaowei LI ; Wentong SHEN ; Zhongyi LI ; Yudi ZHUANG ; Xiaobing MO ; Ying GU ; Ting WU ; Jun ZHANG ; Ningshao XIA
Chinese Journal of Biotechnology 2009;25(7):1082-1087
Here, we presented a method to bacterially express the major structural protein L1 of Human Papillomavirus type 18 (HPV18) as soluble form. We found that the purified L1 could self-assemble to virus-like particles (VLPs). Further, we investigated the immunogenicity and the induced level of neutralizing antibody using these VLPs. First, the genome of HPV18 was cloned from a patient in Xiamen. It was used as template for PCR amplification of HPV18 L1 gene. The resultant DNA fragment was inserted into expression vector pTrxFus and expressed in Escherichia coli GI724. Second, L1 protein was purified by ammonium sulfate precipitation, ion-exchange chromatography and hydrophobic interaction chromatography; and the purified L1 was subjected to self-assembly to form VLPs with the removal of premixed reductant DTT. Finally, the size and morphology of these VLPs was investigated by Dynamic Light Scattering and Transmission Electronic Microscopy as 29.34 nm in hydrated radius and globular particles similar with native HPV18. The half effective dosage (ED50) and maximum level of neutralizing antibody elicitation were measured by vaccinations on mice, rabbit and goat using pseudovirus neutralization cell model. The results showed that the ED50 of HPV18 VLPs is 0.006 microg in mice, and the maximum titer of neutralizing antibody elicited in rabbit and goat is up to 10(7). As a conclusion, we can provide HPV18 VLPs with highly immunogenicity from prokaryote expression system, which may pave a new way for research and development of prophylactic vaccine for HPV18.
Animals
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Capsid Proteins
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biosynthesis
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genetics
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immunology
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Escherichia coli
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genetics
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metabolism
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Goats
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Human papillomavirus 18
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immunology
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isolation & purification
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Mice
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Oncogene Proteins, Viral
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biosynthesis
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genetics
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immunology
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Rabbits
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Recombinant Proteins
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biosynthesis
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genetics
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immunology
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Virion
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genetics
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immunology
8.Study on genetic transformation of antigen G3VP7 gene of human rotavirus in peanut.
Yuchen JIA ; Kai ZHAO ; Xin XUE ; Wei LI ; Shaowei LI ; Dehu LIU
Journal of Biomedical Engineering 2012;29(2):328-331
In order to increase the expression level of target gene and to simplify the purifying process of separation and purification, we performed the transgenetic research of antigen VP7 gene into peanut via Agrobacterium tumefaciens. The plant binary expression vector is pBOG3VP7 harboring fusion gene oleosin-vp7, which is promoted by ole-promoter. Cotyledon nodes were used as transformation recipients. Transformed individuals were obtained through selection on medium containing 125 mg L-1 Kan. Integration of transgenes was assessed by PCR amplification and PCR-Southern blot hybridization. Taking pBOG3VP7 plasmid as positive control, non-transformed peanut as negative control. 6 plants among 11 plants grown up through seletion medium were detected by PCR and the rate of positive plants is 54.5%. PCR positive plants were further analysed by PCR-Southern blot hybridization. The results showed that 3 plants have DNA bloting bands. The results also showed that the foreign gene was integrated into genome of transformed peanuts. Elevated expression of rotavirus VP7 antigen in transgenic peanuts was a critical factor in the development of efficient and cheap plant oral vaccine.
Agrobacterium tumefaciens
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genetics
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Antigens, Viral
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biosynthesis
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genetics
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Arachis
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genetics
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metabolism
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Capsid Proteins
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biosynthesis
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genetics
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Plants, Genetically Modified
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genetics
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metabolism
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Rotavirus
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genetics
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immunology
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Transformation, Genetic
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Vaccines, Synthetic
9.Identification of VP3 antigenic epitopes of infectious bursal disease virus.
Xiao-yun DENG ; Yu-long GAO ; Hong-lei GAO ; Xiao-le QI ; Xiao-yan WANG ; Xiao-mei WANG
Chinese Journal of Virology 2007;23(4):305-311
Infectious bursal disease virus(IBD) causes infectious bursal disease (IBD), which infects bursal of chicken and can evoke immune suppression. This study identified the antigenic epitopes of four McAbs to IBDV VP3(HRB-3F, HRB-7B, HRB-7C and HRB-10E)with pepscan. A set of 17 partially overlapping or consecutive peptides (P1-P17) spanning VP3 were expressed for epitope screening by pepscan. Finally, two antigenic epitopes, 109-119aa and 177-190aa of IBDV VP3, were identified by Western blot and ELISA. The peptides on epitopes could react with IBDV, and they had better immunnogenicity. The sequences of epitopes were compared with that of several other IBDV strains in the same region, and was found they were totally homologous. This study showed the two epitopes were novel conserved linear B cell epitopes on the VP3 of IBDV. This study provides basis for the development of immunity-based prophylactic, therapeutic and diagnostic measures for control of IBD and further for structural and functional analysis of IBDV.
Animals
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Antibodies, Monoclonal
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immunology
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Antibodies, Viral
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blood
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immunology
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Blotting, Western
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Capsid Proteins
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genetics
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immunology
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metabolism
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Enzyme-Linked Immunosorbent Assay
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Epitopes
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genetics
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immunology
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metabolism
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Immune Sera
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immunology
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Immunization
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Immunohistochemistry
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Infectious bursal disease virus
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genetics
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immunology
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metabolism
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Mice
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Mice, Inbred BALB C
10.Research advances in the Cap gene of circovirus and its encoding capsid protein.
Chinese Journal of Virology 2013;29(4):465-470
The Cap gene of antisense strand of circovirus has the most variation of the genome, and encodes a capsid protein which has the main immunogenicity. The N-terminal of capsid protein makes up of nuclear localization signal which is involved with virus location. This review summarizes the research advance of Cap gene of circovirus in the sequence characteristics, its encoding capsid protein, basic functions of the capsid protein and its interaction with MKRN1 protein, Hsp40 protein, receptor protein gClqR and complement factor C1qB protein. This paper lays a theory foundation for the further study of the capsid protein in the aspects of viral attachment, replication and transportation.
Animals
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Capsid Proteins
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genetics
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immunology
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metabolism
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Circoviridae Infections
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veterinary
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virology
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Circovirus
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genetics
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immunology
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Genetic Variation
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Genome, Viral
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genetics
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Nuclear Localization Signals
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Protein Binding
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Virus Replication