1.Prokaryotic Expression of Bm86 Gene of Boophilus microplus and Optimization of the Expression Condition
Miling MA ; Guiquan GUAN ; Youquan LI ; Aihong LIU ; Qiaoyun REN ; Qingli NIU ; Hong YIN ; Jianxun LUO
Chinese Journal of Parasitology and Parasitic Diseases 1997;0(06):-
A pair of specific primers was designed based on the reported Bm86 gene of Boophilus microplus,the Bm86 gene was cloned by PCR using the plasmid pMD18-T-Bm86 as templates,and subcloned into the prokaryotic plasmid pGEX-4T-1.The recombined plasmid was transformed into E.coli BL21(DE3) and followed by expression of the protein induced by different concentration of IPTG for different time.SDS-PAGE showed that the recombinant plasmid pGEX-4T-1/Bm86 expressed a fusion protein Bm86-GST(Mr 94 000) after being induced with IPTG.High level expre-ssion of Bm86-GST was found at 1 mmol/L IPTG condition after incubation for 8 h at 37 ℃,and the expression level of the recom-binant Bm86-GST reached up to 29% of total E.coli proteins.Western-blotting analysis showed that the recombinant Bm86-GST was recognized by the rabbit anti-B.microplus positive serum.
2.Validation of Reference Genes for Quantitative Real-Time PCR in Bovine PBMCs Transformed and Non-transformed by Theileria annulata.
Hongxi ZHAO ; Junlong LIU ; Youquan LI ; Congshan YANG ; Shuaiyang ZHAO ; Juan LIU ; Aihong LIU ; Guangyuan LIU ; Hong YIN ; Guiquan GUAN ; Jianxun LUO
The Korean Journal of Parasitology 2016;54(1):39-46
Theileria annulata is a tick-borne intracellular protozoan parasite that causes tropical theileriosis, a fatal bovine lymphoproliferative disease. The parasite predominantly invades bovine B lymphocytes and macrophages and induces host cell transformation by a mechanism that is not fully comprehended. Analysis of signaling pathways by quantitative real-time PCR (qPCR) could be a highly efficient means to understand this transformation mechanism. However, accurate analysis of qPCR data relies on selection of appropriate reference genes for normalization, yet few papers on T. annulata contain evidence of reference gene validation. We therefore used the geNorm and NormFinder programs to evaluate the stability of 5 candidate reference genes; 18S rRNA, glyceraldehyde-3-phosphate dehydrogenase (GAPDH), ACTB (β-actin), PRKG1 (protein kinase cGMP-dependent, type I) and TATA box binding protein (TBP). The results showed that 18S rRNA was the reference gene most stably expressed in bovine PBMCs transformed and non-transformed with T. annulata, followed by GAPDH and TBP. While 18S rRNA and GAPDH were the best combination, these 2 genes were chosen as references to study signaling pathways involved in the transformation mechanism of T. annulata.
Animals
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B-Lymphocytes/parasitology
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Cattle
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Cell Line
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Cells/*parasitology
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Cells, Cultured
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Gene Expression Profiling
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Host-Parasite Interactions/*genetics
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Real-Time Polymerase Chain Reaction/*veterinary
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Reproducibility of Results
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Signal Transduction/*genetics
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Theileria annulata/physiology
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Theileriasis/*physiopathology
3.Phylogenetic Analysis of Ruminant Theileria spp. from China Based on 28S Ribosomal RNA Gene.
Huitian GOU ; Guiquan GUAN ; Miling MA ; Aihong LIU ; Zhijie LIU ; Zongke XU ; Qiaoyun REN ; Youquan LI ; Jifei YANG ; Ze CHEN ; Hong YIN ; Jianxun LUO
The Korean Journal of Parasitology 2013;51(5):511-517
Species identification using DNA sequences is the basis for DNA taxonomy. In this study, we sequenced the ribosomal large-subunit RNA gene sequences (3,037-3,061 bp) in length of 13 Chinese Theileria stocks that were infective to cattle and sheep. The complete 28S rRNA gene is relatively difficult to amplify and its conserved region is not important for phylogenetic study. Therefore, we selected the D2-D3 region from the complete 28S rRNA sequences for phylogenetic analysis. Our analyses of 28S rRNA gene sequences showed that the 28S rRNA was useful as a phylogenetic marker for analyzing the relationships among Theileria spp. in ruminants. In addition, the D2-D3 region was a short segment that could be used instead of the whole 28S rRNA sequence during the phylogenetic analysis of Theileria, and it may be an ideal DNA barcode.
Animals
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Base Sequence
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China
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DNA, Ribosomal/chemistry/genetics
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Molecular Sequence Data
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Phylogeny
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RNA, Ribosomal, 28S/genetics
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Ruminants
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Sequence Alignment
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Sequence Analysis, DNA/veterinary
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Theileria/*classification/genetics/isolation & purification
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Theileriasis/*parasitology
4.Biological Parameters of Rhipicephalus (Boophilus) microplus (Acari: Ixodidae) Fed on Rabbits, Sheep, and Cattle.
Miling MA ; Ze CHEN ; Aihong LIU ; Qiaoyun REN ; Junlong LIU ; Zhijie LIU ; Youquan LI ; Hong YIN ; Guiquan GUAN ; Jianxun LUO
The Korean Journal of Parasitology 2016;54(3):301-305
In order to determine the effect of various hosts on feeding performance of Rhipicephalus (Boophilus) microplus, we used 3 mammalian species as hosts, cattle (Qinchuan), sheep (T an), and rabbits (Japanese white rabbit) for infest-ing ticks. Five hundreds of R. microplus larvae were exposed to each animal (3 animals/host species). Tick recoveries were 11.0%, 0.47%, and 5.5% from cattle, sheep, and rabbits, respectively. The averages of tick feeding periods were not significantly different on cattle, sheep, and rabbits, 28.8, 25.3, and 26.7 days, respectively. The average weights of individual engorged female from cattle, sheep, and rabbits were 312.5, 219.1, and 130.2 mg, respectively and those of egg mass weights each to 85.0, 96.6, and 17.8 mg. The highest egg hatching rate was in the ticks from cattle (96.0%), fol-lowed by those from rabbits (83.0%) and sheep (19.2%). These data suggest that rabbits could be as an alternative host to cultivate R. microplus for evaluating vaccines and chemical and biological medicines against the tick in the laboratory, although the biological parameters of ticks were less than those from cattle.
Animals
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Cattle*
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Female
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Humans
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Larva
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Ovum
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Rabbits*
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Rhipicephalus*
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Sheep*
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Ticks
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Vaccines
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Weights and Measures
5.Using mouse model to evaluate the immune effect of DNA prime-protein boost strategies targeting Japanese encephalitis virus.
Ruiming YU ; Zhancheng TIAN ; Shandian GAO ; Junzheng DU ; Guiquan GUAN ; Hong YIN
Chinese Journal of Biotechnology 2022;38(8):2902-2911
In order to evaluate the immune effect of the genotype Ⅰ Japanese encephalitis virus prM-E DNA vaccine and the prM-EⅢ fusion protein subunit vaccine on mice using DNA prime-protein boost strategy, the prM-E gene was inserted into the pVAX1 eukaryotic expression vector. The recombinant expression vector prM-E-pVAX1 was constructed as a DNA vaccine for initial immunity, and the recombinant prM-EⅢ fusion protein was obtained using a prokaryotic expression system as a subunit vaccine for enhanced immunity. Thirty two female BALB/c mice aged 4-6 weeks were randomly divided into four groups, and a prM-E-pVAX1 DNA vaccine group, a DNA prime-protein boost immune group, a prM-EⅢ subunit vaccine group, and a pVAX1 vector control group were set up. The specific antibody level in serum was monitored by ELISA, the neutralizing antibody titer was detected by plaque reduction neutralization, and the cellular immune responses induced by different vaccine immune groups were analyzed by cytokine expression abundance and lymphocyte proliferation experiments. The results showed that the neutralizing antibody titers induced by mice immunized with the DNA prime-protein boost strategy were close to that of the group immunized with the single prM-EⅢ subunit vaccine, but significantly higher than that of the group immunized with the single prM-E-pVAX1 DNA vaccine. DNA prime-protein boost strategies induced effective Th1/Th2 immune responses in mouse models, in particular the Th1 cell-mediated immune responses. This study provides a new immune strategy that may facilitate the prevention of Japanese encephalitis.
Animals
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Antibodies, Neutralizing
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Antibodies, Viral
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DNA
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Disease Models, Animal
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Encephalitis Virus, Japanese/genetics*
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Female
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Mice
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Mice, Inbred BALB C
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Vaccines, DNA/genetics*
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Vaccines, Subunit
6.Preparation of bovine viral diarrhea disease virus 1 virus-like particles and evaluation of its immunogenicity in a guinea pig model.
Shandian GAO ; Zhonghui ZHANG ; Zhancheng TIAN ; Jinming WANG ; Junzheng DU ; Guiquan GUAN ; Hong YIN
Chinese Journal of Biotechnology 2022;38(1):130-138
In order to obtain virus-like particles (VLPs) for prevention of bovine viral diarrhea virus 1 (BVDV-1), the C-Erns-E1-E2 region was cloned into a pFastBacDaul vector for generating the recombinant Bacmid-BVDV-1 in DH10Bac Escherichia coli. The recombinant baculovirus Baculo-BVDV-1 was produced by transfecting the Sf9 cells with Bacmid-BVDV-1. The expressed protein and the assembled VLPs were determined by immunofluorescence, Western blotting and electron microscopy. Guinea pigs were immunized with inactivated VLPs coupled with the Montanide ISA-201 adjuvant. The immunogenicity of VLPs was evaluated by monitoring the humoral immune response with neutralizing antibody titer determination, as well as by analyzing the cell-mediated immune response with lymphocyte proliferation assay. The protective efficacy of VLPs was evaluated by challenging with 106 TCID50 virulent BVDV-1 strain AV69. The results showed that the recombinant Baculo-BVDV-1 efficiently expressed BVDV structural protein and form VLPs in infected Sf9 cells. The immunization of guinea pigs with VLPs resulted in a high titer (1:144) of neutralizing antibody, indicating an activated cellular immunity. Significantly lower viral RNA in the blood of the post-challenged immunized guinea pigs was observed. The successful preparation of BVDV VLPs with insect cell expression system and the observation of the associated immunogenicity may facilitate further development of a VLPs-based vaccine against BVD.
Animals
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Antibodies, Viral
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Diarrhea
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Diarrhea Virus 1, Bovine Viral
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Guinea Pigs
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Mineral Oil
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Viral Envelope Proteins
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Viral Vaccines
7.Comparison of the antigenicity of African swine fever virus p35 protein as diagnostic antigen.
Lei SHI ; Zhancheng TIAN ; Jifei YANG ; Shandian GAO ; Junzheng DU ; Yaru ZHAO ; Zhijie LIU ; Guiquan GUAN ; Guangyuan LIU ; Jianxun LUO ; Hong YIN
Chinese Journal of Biotechnology 2021;37(1):187-195
In order to screen African swine fever virus (ASFV) diagnostic antigen with the best enzyme linked immunosorbent assay (ELISA) reactivity. By establishing the ELISA method, the diagnostic antigen of ASFV p30 protein expressed by baculovirus-insect cell expression system as reference, we explored the antigenic properties and diagnostic potential of ASFV p35 protein expressed by prokaryotic expression system as a diagnostic antigen. The results of Western blotting and immunofluorescence show that the molecular weight of the recombinant p35 protein and p30 protein obtained was 40 kDa and 30 kDa, respectively, and these two proteins had good immuno-reactivity with ASFV positive serum. Recombinant p30 and p35 proteins were used as diagnostic antigens to establish ELISA, and the sensitivity and repeatability of these methods were tested. The results show that although the detection sensitivity of the p30-ELISA established in this study was higher than that of the p35-ELISA, the sensitivity of p35-ELISA was 95.8%, and variations in intra- and inter-assay repeatability of the two methods were less than 10%. The coincidence rate between the p35-ELISA and the imported kit was 97.2%. Results show that p35-ELISA was sensitive and stable, and could detect specific antibodies against ASFV.
African Swine Fever/diagnosis*
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African Swine Fever Virus/genetics*
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Animals
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Antibodies, Viral
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Enzyme-Linked Immunosorbent Assay
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Recombinant Proteins/genetics*
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Swine
8.The E248R protein of African swine fever virus inhibits the cGAS-STING-mediated innate immunity.
Yinguang LIU ; Wenping YANG ; Yuan WEN ; Qingli NIU ; Jifei YANG ; Guiquan GUAN ; Hong YIN ; Haixue ZHENG ; Dan LI ; Zhijie LIU
Chinese Journal of Biotechnology 2022;38(5):1837-1846
We researched the mechanism of African swine fever virus (ASFV) protein E248R in regulating the cGAS-STING pathway. First, we verified via the dual-luciferase reporter assay system that E248R protein inhibited the secretion of IFN-β induced by cGAS-STING or HT-DNA in a dose-dependent manner. The relative quantitative PCR analysis indicated that the overexpression of E248R inhibited HT-DNA-induced transcription of IFN-b1, RANTES, IL-6, and TNF-α in PK-15 cells. Next, we found that E248R interacted with STING by co-immunoprecipitation assay and laser confocal microscopy. Finally, we demonstrated that E248R inhibited the expression of STING protein by using Western blotting. We demonstrated for the first time that the E248R protein of ASFV suppressed the host innate immune response via inhibiting STING expression. The results are pivotal in extending the understanding of the ASFV immune escape and can guide the design of vaccines against ASFV.
African Swine Fever Virus/genetics*
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Animals
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DNA
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Immunity, Innate
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Nucleotidyltransferases/metabolism*
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Signal Transduction
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Swine