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1.
Virologica Sinica ; (6): 71-76, 2010.
Article in Chinese | WPRIM | ID: wpr-404055

ABSTRACT

In this study,a synthesized quadruple antigenic epitope gene region of the classical swine fever virus (CSFV)E2 glycoprotein was expressed in E.coli to a obtain target protein.This target protein was used as a coating antigen to establish an indirect ELISA for specifically detecting anti-CSFV antibodies in serum samples from pigs.The P/N cut-off value of this assay was 1.92 by receiver operating characteristic curve(ROC)analysis based on 30 negative sera and 80 positive samples.The test gave 97.5% sensitivity and 96.7% specificity compared with the indirect hemagglutination(IHA)test.The inter-assay and intra-assay coefficients of variation (CVs)for 16 sera were both ≤6.8%.No cross-reactivity between the coating antigen and anti-bovine viral diarrhoea virus(BVDV)antibodies was observed.

2.
Chinese Journal of Zoonoses ; (12): 140-143, 2010.
Article in Chinese | WPRIM | ID: wpr-433120

ABSTRACT

The ompA gene of Chlamyia psittaci in cows was amplified by PCR with primers designed based on those reported in GenBank.The amplified ompA gene was inserted into the bacterial plasmid vector pGEX-4T-1 and then transformed into E.coli BL21(DE3) with IPTG induction. The gene was derived from plasmid pMD18-T vector and then sequenced.It was demonstrated that this recombinant fusion protein of approximately 68kD in molecular mass was highly expressed in inclusion body and more pure proteins would be produced after purification.The fusion protein specifically reacted with positive sera of bovine Chlamydia as demonstrated by Western blotting. These results indicate that this recombinant fusion protein shows good reactivity and could be used to develop the diagnostic kit for bovine Chlamydia and genetic engineering vaccine.

3.
Virologica Sinica ; (6): 363-368, 2008.
Article in Chinese | WPRIM | ID: wpr-407038

ABSTRACT

The sequence encoding an E2 main antigen glycoprotein of the C strain of classical swine fever virus (CSFV) was highly expressed in the host cell E. coli BL21-CodonPlus (DE3)-RIL using the pGEX-4T-1 expression vector and the soluble recombinant product was purified with Glutathione Sepharose TM<'4B> by centrifugation. The soluble recombinant protein showed good immune reactions and was confirmed by Western blot using anti-CSFV-specific antibodies. Then an indirect ELISA with the purified E2 protein as the coating antigen was established to detect antibody against CSFV. The result revealed that the optimal concentration of coated antigen was 0.6 μg/well and the optimal dilution of serum was 1:80. The positive cut-off value of this ELISA assay was OD<,tested serum>/OD<,negative serum>≥2.1- The E2-ELISA method was evaluated by comparison with the indirect hemagglutination test (IHAT). When a total of 100 field serum samples were tested the sensitivity and specificity were 90.3% and 94.7% respectively. Specificity analysis showed that there were no cross-reactions between BVD serum and the purified E2 protein in the E2-ELISA.

4.
Basic & Clinical Medicine ; (12)2006.
Article in Chinese | WPRIM | ID: wpr-588290

ABSTRACT

Following genomes from various strains of Chlamydia spp being sequenced,it was found that there were only tiny changes in their gene components,the infected host variety and pathogenisis process were very different.The genomes from Chlamydia trachomatis,C.muridarum,C.pneumoniae,Chlamydophila caviae were studied in detail,which revealed the relationship of chlamydial genomes and multiple members causes.The discovery of polymorphic membrane protein gene family,type Ⅲ secretion gene and peptidoglycan coding gene showed the great research success in the field.After the complete nucleotide acids of various species and strains of Chlamydia spp were sequenced many proteins were further identified,involving the outer membrane protein,major outer membrane protein,hot shock protein and polymorphic membrane protein with different functions and structures.Fully understanding the properties of these proteins is in favor of studying mechanisms of pathogenisis and immunity of Chlamydia as well as high-effective gene engineering vaccine against chlamydiosis.

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