1.Construction of a stable 4T1 cell line expressing UL19 by the PiggyBac transposon system.
Xiaotong ZHAO ; Xinya WANG ; Binlei LIU ; Han HU ; Yang WANG
Chinese Journal of Biotechnology 2024;40(11):4138-4148
To investigate the mechanism of the major capsid protein VP5 (encoded by the UL19 gene) of oncolytic herpes simplex virus type Ⅱ (oHSV2) in regulating the antitumor function of immune cells, we constructed a mouse breast cancer cell line 4T1-iRFP-VP5-GFP stably expressing VP5 protein, near-infrared fluorescent protein (iRFP), and green fluorescent protein (GFP) by using the PiggyBac transposon system. Flow cytometry and Western blotting were employed to screen the monoclonal cell lines expressing both GFP and VP5 and examine the expression stability of UL19 in the constructed cell line. The results of SYBR Green I real-time PCR and Western blotting showed that the copies of UL19 and the expression level of VP5 protein in the 15th passage of 4T1-iRFP-VP5-GFP cells were significantly higher than those in the 4T1 cells transiently transfected with UL19, demonstrating the stable insertion of UL19 into the 4T1 cell genome. The real-time cell analysis (RTCA) was employed to monitor the proliferation of 4T1-iRFP-VP5-GFP cells, which showed similar proliferation activity to their parental 4T1 cells. Further studies confirmed that NK92 cells exhibited stronger cytotoxicity against 4T1-iRFP-VP5-GFP cells than against 4T1 cells. This study layed a foundation for elucidating the role of VP5 protein in regulating immune cells, including T cells and NK cells, via HLA-E in 4T1 cells to exert the anti-tumor function.
Animals
;
Mice
;
DNA Transposable Elements/genetics*
;
Cell Line, Tumor
;
Capsid Proteins/biosynthesis*
;
Transfection
;
Green Fluorescent Proteins/metabolism*
;
Oncolytic Viruses/genetics*
;
Female
;
Simplexvirus/genetics*
2.A fluorescence immunochromatography method for detection of human papillomavirus type 16 E6 and L1 proteins.
Xin'er LIU ; Yinzhen ZHAO ; Nannan NIU ; Lingke LI ; Xueli DU ; Jinxiang GUO ; Yingfu ZHANG ; Jichuang WANG ; Yiqing ZHANG ; Yunlong WANG
Chinese Journal of Biotechnology 2024;40(11):4266-4276
This study aims to establish a time-resolved fluorescence immunochromatography method for simultaneous determination of human papillomavirus (HPV) type 16 E6 and L1 protein concentrations. The amount of lanthanide microsphere-labeled antibodies, the concentration of coated antibodies, and the reaction time were optimized, and then a test strip for the simultaneous determination of the protein concentrations was prepared. The performance of the detection method was evaluated based on the concordance of the results from clinical practice. The optimal conditions were 8 μg and 10 μg of HPV16 L1 and E6-labeled antibodies, respectively, 1.5 mg/mL coated antibodies, and reaction for 10 min. The detection with the established method for L1 and E6 proteins showed the linear ranges of 5-320 ng/mL and 2-64 ng/mL and the lowest limits of detection of 1.78 ng/mL and 1.09 ng/mL, respectively. There was no cross reaction with human immunodeficiency virus (HIV), treponema pallidum (TP), or HPV18 E6 and L1 proteins. The average recovery rate of the established method was between 97% and 107%. The test strip prepared in this study showed the sensitivity, specificity, and diagnostic accuracy of 97.46%, 90.57%, and 95.32%, respectively, in distinguishing patients with cervical cancer and precancerous lesions from healthy subjects, with the area under the curve (AUC) of 0.980 1 and 95% Confidence Interval (CI) of 0.956 5 to 1.000 0. The time-resolved fluorescence immunochromatography combined with the test strips prepared in this study showed high sensitivity, high accuracy, simple operation, and rapid reaction in the quantitation of HPV16 E6 and L1 proteins. It thus can be used as an auxiliary method for the diagnosis and early screening of cervical cancer and precancerous lesions and the assessment of disease course.
Oncogene Proteins, Viral/immunology*
;
Humans
;
Chromatography, Affinity/methods*
;
Female
;
Human papillomavirus 16
;
Repressor Proteins/immunology*
;
Capsid Proteins/immunology*
;
Papillomavirus Infections/diagnosis*
;
Fluorescence
;
Uterine Cervical Neoplasms/virology*
3.Preparation and immunogenicity evaluation of ferritin nanoparticles conjugated with African swine fever virus p30 protein.
Yue ZHANG ; Yi RU ; Rongzeng HAO ; Yang YANG ; Longhe ZHAO ; Yajun LI ; Rui YANG ; Bingzhou LU ; Haixue ZHENG
Chinese Journal of Biotechnology 2024;40(12):4509-4520
This study developed ferritin-based nanoparticles carrying the African swine fever virus (ASFV) p30 protein and evaluated their immunogenicity, aiming to provide an experimental basis for the research on nanoparticle vaccines against ASFV. Initially, the gene sequences encoding the p30 protein and SpyTag were fused and inserted into the pCold-I vector to create the pCold-p30 plasmid. The gene sequences encoding SpyCatcher and ferritin were fused and then inserted into the pET-28a(+) vector to produce the pET-F-np plasmid. Both plasmids were expressed in Escherichia coli upon induction. Subsequently, the affinity chromatography-purified p30 protein was conjugated with ferritin in vitro, and the p30-ferritin (F-p30) nanoparticles were purified by size-exclusion chromatography. The morphology and structural integrity of F-p30 nanoparticles were examined by a particle size analyzer and transmission electron microscopy. Mice were immunized with F-p30 nanoparticles, and the humoral and cellular immune responses were assessed. The results showed that F-p30 nanoparticles were successfully prepared, with the particle size of approximately 20 nm. F-p30 nanoparticles were efficiently internalized by bone marrow-derived dendritic cells (BMDCs) cells in vitro. Compared with the p30 protein alone, F-p30 nanoparticles induced elevated levels of specific antibodies and cytokines in mice and stimulated the proliferation of follicular helper T cell (TFH) and germinal center B cell (GCB) in lymph nodes as well as CD4+ and CD8+ T cells in the spleen. In conclusion, we successfully prepared F-p30 nanoparticles which significantly enhanced the immunogenicity of p30 protein, giving insights into the development of vaccines against ASFV.
Animals
;
Nanoparticles/chemistry*
;
Mice
;
African Swine Fever Virus/genetics*
;
Ferritins/chemistry*
;
Swine
;
Viral Vaccines/genetics*
;
African Swine Fever/immunology*
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Mice, Inbred BALB C
;
Viral Proteins/genetics*
;
Escherichia coli/metabolism*
;
Dendritic Cells/immunology*
;
Immunogenicity, Vaccine
;
Antibodies, Viral/blood*
;
Female
;
Capsid Proteins/genetics*
4.Construction of foot-and-mouth disease virus like particles-induced expression vectors and screening of BHK-21 cell pools.
Shuzhen TAN ; Hu DONG ; Shiqi SUN ; Huichen GUO
Chinese Journal of Biotechnology 2023;39(12):4849-4860
Transient expression is the major method to express foot-and-mouth disease virus (FMDV) capsid proteins in mammalian cells. To achieve stable expression of FMDV capsid proteins and efficient assembly of virus like particles (VLPs) in cells, the plasmids of piggyBac (PB) transposon-constitutive expression and PB transposon-tetracycline (Tet) inducible expression vectors were constructed. The function of the plasmids was tested by fluorescent proteins. By adding antibiotics, the constitutive cell pools (C-WT, C-L127P) expressing P12A3C (WT/L127P) genes and the inducible cell pools (I-WT, I-L127P) expressing P12A3C (WT/L127P) genes were generated. The genes of green fluorescent protein, 3C protease and reverse tetracycline transactivator (rtTA) were integrated into chromosome, which was confirmed by fluorescence observation and PCR testing. The cell pool I-L127P has a stronger production capacity of capsid proteins and VLPs, which was confirmed by Western blotting and enzyme linked immunosorbent assay (ELISA), respectively. In conclusion, inducing the chromosomal expression of FMDV capsid proteins was firstly reported, which may facilitate the technical process of mammalian production of FMDV VLPs vaccine and the construction of mammalian inducible expression systems for other proteins.
Animals
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Foot-and-Mouth Disease Virus/genetics*
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Capsid Proteins
;
Viral Proteins/metabolism*
;
Foot-and-Mouth Disease/prevention & control*
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Tetracyclines/metabolism*
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Viral Vaccines
;
Antibodies, Viral
;
Mammals/metabolism*
5.Construction of recombinant adenovirus expressing capsid protein of serotype O foot-and-mouth disease virus and analysis of its immunogenicity.
Cancan WANG ; Liping ZHANG ; Xinsheng LIU ; Peng ZHOU ; Li PAN ; Yonglu WANG
Chinese Journal of Biotechnology 2022;38(5):1824-1836
In order to construct a recombinant replication deficient human type 5 adenovirus (Ad5) expressing a foot-and-mouth disease virus (FMDV) capsid protein, specific primers for P12A and 3B3C genes of FMDV-OZK93 were synthesized. The P12A and 3B3C genes were then amplified and connected by fusion PCR, and a recombinant shuttle plasmid pDC316-mCMV-EGFP-P12A3B3C expressing the FMDV-OZK93 capsid protein precursor P12A and 3B3C protease were obtained by inserting the P12A3B3C gene into the pDC316-mCMV-EGFP plasmid. The recombinant adenovirus rAdv-P12A3B3C-OZK93 was subsequently packaged, characterized and amplified using AdMaxTM adenovirus packaging system, and the expression was verified by infecting human embryonic kidney cell HEK-293. The humoral and cellular immunity levels of well-expressed and purified recombinant adenovirus immunized mice were evaluated. The results showed that rAdv-P12A3B3C-OZK93 could be stably passaged and the maximum virus titer reached 1×109.1 TCID50/mL. Western blotting and indirect immunofluorescence showed that rAdv-P12A3B3C-OZK93 expressed the FMDV-specific proteins P12A and VP1 in HEK-293 cells. In addition, the PK cell infection experiment confirmed that rAdv-P12A3B3C-OZK93 could infect porcine cells, which is essential for vaccination in pigs. Comparing with the inactivated vaccine group, the recombinant adenovirus could induce higher FMDV-specific IgG antibodies, γ-IFN and IL-10. This indicates that the recombinant adenovirus has good immunity for animal, which is very important for the subsequent development of foot-and-mouth disease vaccine.
Adenoviridae/genetics*
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Adenoviruses, Human/genetics*
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Animals
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Antibodies, Viral
;
Capsid/metabolism*
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Capsid Proteins
;
Foot-and-Mouth Disease/prevention & control*
;
Foot-and-Mouth Disease Virus/genetics*
;
HEK293 Cells
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Humans
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Mice
;
Recombinant Proteins/genetics*
;
Serogroup
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Swine
;
Viral Proteins
;
Viral Vaccines/genetics*
6.Prokaryotic expression of a recombinant protein of adeno-associated virus capsid conserved regions and preparation of its polyclonal antibody.
Shu Yue LI ; Chun Yu CAO ; Hao ZHANG ; Yu Ling LI ; Xiong Zhou ZHANG ; Zi Can YANG ; Yan XIA ; Lei WANG ; Ya Feng LÜ
Journal of Southern Medical University 2022;42(6):944-948
OBJECTIVE:
To express and purify the antigenic peptide of adeno-associated virus (AAV) capsid conserved regions in prokaryotic cells and prepare its rabbit polyclonal antibody.
METHODS:
The DNA sequence encoding the conserved regions of AAV capsid protein was synthesized and cloned into the vector pET30a to obtain the plasmid pET30a-AAV-CR for prokaryotic expression and purification of the conserved peptides. Coomassie blue staining and Western blotting were used to identify the AAV conserved peptides. Japanese big ear white rabbits were immunized with AAV conserved region protein to prepare polyclonal antibody, with the rabbits injected with PBS as the control group. The antibody titer was determined with ELISA, and the performance of the antibody for recognizing capsid protein sequences of AAV1-AAV10 was assessed with Western blotting and immunofluorescence assay.
RESULTS:
The plasmid pET30a-AAV-CR was successfully constructed, and a recombinant protein with a relative molecular mass of 17000 was obtained. The purified protein induced the production of antibodies against the conserved regions of AAV capsid in rabbits, and the titer of the purified antibodies reached 1:320 000. The antibodies were capable of recognizing a wide range of capsid protein sequences of AAV1-AAV10.
CONCLUSION
We successfully obtained the polyclonal antibodies against AAV capsid conserved region protein from rabbits, which facilitate future studies of AAV vector development and the biological functions of AAV.
Animals
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Antibodies
;
Capsid
;
Capsid Proteins/genetics*
;
Dependovirus/genetics*
;
Prokaryotic Cells
;
Rabbits
;
Recombinant Proteins/genetics*
7.Characterization of the antigens in inactivated porcine circovirus type 2 vaccines and virus-like particle vaccines by high-performance size-exclusion chromatography coupled with multi-angle laser light scattering.
Yuan XU ; Yanli YANG ; Xingqi ZOU ; Cui LI ; Yuanyuan ZHU ; Yixian QIN ; Yan LI ; Ya Nan SHENG ; Yebing LIU ; Guorui PENG ; Xiaoai XU ; Songping ZHANG ; Qizu ZHAO
Chinese Journal of Biotechnology 2022;38(8):2948-2958
This paper aims to detect the antigens in porcine circovirus type 2 (PCV2) vaccines by high-performance size-exclusion chromatography (HPSEC) coupled with multi-angle laser light scattering (MALLS). With purified inactivated PCV2 and PCV2 virus-like particles (VLP) as references, two inactivated vaccines (a and b) and two VLP vaccines (c and d) for PCV2 from four manufacturers were analyzed by HPSEC-MALLS after demulsification. The antigen peaks in HPSEC-MALLS were identified by PCV2 antigen test strips, Western blotting and transmission electron microscope (TEM). The repeatability and linearity of the method were investigated. The results showed the virus antigens in the two inactivated vaccines were eluted at about 13.3 min in HPSEC. The molecular weight of these antigens was 2.61×106 (±4.34%) Da and 2.40×106 (±2.51%) Da, respectively, as calculated by MALLS. The antigen peaks of the two VLP vaccines also appeared at 13.3 min and the molecular weight was 2.09×106 (±2.94%) Da and 2.88×106 (±11.85%) Da, respectively, which was close to the theoretical molecular weight of PCV2. Moreover, an antigen peak of VLP vaccine c was observed at 11.4 min and the molecular weight was 4.37×106 (±0.42%) Da. The antigen was verified to be the dimer of VLP by TEM. Vaccine d and purified Cap VLP antigens were tested repeatedly, and the RSD of the peak area (n=3) was all < 1.5%, indicating that the method was repeatable. The purified VLP were diluted in serial and tested for linearity. The result suggested good linear relationship between the peak area of VLP or VLP aggregates and the protein concentration of the sample with R2 of 0.999 and 0.997, respectively. Thus, the method met the requirement for quantification and aggregate analysis. This method is accurate and efficient in in vitro quality evaluation and improvement of PCV2 vaccine.
Animals
;
Antibodies, Viral
;
Capsid Proteins
;
Chromatography, Gel
;
Circoviridae Infections/prevention & control*
;
Circovirus
;
Lasers
;
Swine
;
Vaccines, Inactivated
;
Vaccines, Virus-Like Particle
;
Viral Vaccines
8.Effect of amino acid site modification on stability of foot-and-mouth disease virus-like particles.
Luying LI ; Hu DONG ; Yuanlu LU ; Miaomiao WANG ; Shiqi SUN ; Huichen GUO
Chinese Journal of Biotechnology 2021;37(7):2435-2442
The stability of virus-like particles (VLPs) is currently the main factor affecting the quality of foot-and-mouth disease VLPs vaccines. In order to further improve the quality of the VLPs vaccine of foot-and-mouth disease (FMD), three amino acid modification sites were designed and screened through kinetic analysis software, based on the three-dimensional structure of FMDV. The three mutant recombinant plasmids were successfully prepared by the point mutation kit, transformed into Escherichia coli strain BL21 and expressed in vitro. After purification by Ni ion chromatography column, SDS-PAGE proved that the three amino acid mutations did not affect the expression of the target protein. The results of the stability study of three FMD mutant VLPs obtained by in vitro assembly show that the introduction of internal hydrophobic side chain amino acids made the morphology of VLPs more uniform (N4017W), and their stability was significantly improved compared to the other two VLPs. The internal hydrophobic force of the capsid contributes to the formation of VLPs and helps to maintain the stability of the capsid, providing new experimental ideas for improving the quality of VLPs vaccines, and helping to promote the development of VLPs vaccines.
Amino Acids
;
Animals
;
Capsid Proteins/genetics*
;
Foot-and-Mouth Disease/prevention & control*
;
Foot-and-Mouth Disease Virus/genetics*
;
Kinetics
;
Vaccines, Virus-Like Particle/genetics*
;
Viral Vaccines/genetics*
10.RT-nPCR Assays for Amplification and Sequencing of VP1 Genes in Human Enterovirus A-D from Clinical Specimens.
Wei CHEN ; Yu Wei WENG ; Wen Xiang HE ; Ying ZHU ; Ting Ting YU ; Jian Feng XIE ; Kui Cheng ZHENG ; Yan Sheng YAN ; Yong Jun ZHANG ; Wen Chang ZHANG
Biomedical and Environmental Sciences 2020;33(11):829-838
Objective:
To develop RT-nPCR assays for amplifying partial and complete VP1 genes of human enteroviruses (HEVs) from clinical samples and to contribute to etiological surveillance of HEV-related diseases.
Methods:
A panel of RT-nPCR assays, consisting of published combined primer pairs for VP1 genes of HEV A-C and in-house designed primers for HEV-D, was established in this study. The sensitivity of each RT-nPCR assay was evaluated with serially diluted virus stocks of five serotypes expressed as CCID
Results:
The sensitivity of RT-nPCR assays for amplifying partial VP1 gene of HEVs was 0.1 CCID
Conclusion
This RT-nPCR system is capable of amplifying the partial and complete VP1 gene of HEV A-D, providing rapid, sensitive, and reliable options for molecular typing and molecular epidemiology of HEVs in clinical specimens.
Capsid Proteins/genetics*
;
Enterovirus A, Human/genetics*
;
Enterovirus B, Human/genetics*
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Enterovirus C, Human/genetics*
;
Enterovirus D, Human/genetics*
;
Humans
;
Molecular Epidemiology/methods*
;
Molecular Typing/methods*
;
Reverse Transcriptase Polymerase Chain Reaction/methods*

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