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Volume 35 Issue 6
Jun.  2020
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Article Contents
WANG G Q, LI X X, SU Y F, et al. MS2 Phage-mediated Preparation and Immunogenicity of Chimeric Nanoparticles with Linear Epitope of Reproductive and Respiratory Syndrome Virus [J]. Fujian Journal of Agricultural Sciences,2020,35(6):618−625 doi: 10.19303/j.issn.1008-0384.2020.06.007
Citation: WANG G Q, LI X X, SU Y F, et al. MS2 Phage-mediated Preparation and Immunogenicity of Chimeric Nanoparticles with Linear Epitope of Reproductive and Respiratory Syndrome Virus [J]. Fujian Journal of Agricultural Sciences,2020,35(6):618−625 doi: 10.19303/j.issn.1008-0384.2020.06.007

MS2 Phage-mediated Preparation and Immunogenicity of Chimeric Nanoparticles with Linear Epitope of Reproductive and Respiratory Syndrome Virus

doi: 10.19303/j.issn.1008-0384.2020.06.007
  • Received Date: 2019-12-24
  • Rev Recd Date: 2020-03-19
  • Publish Date: 2020-08-10
  •   Objective   Using the protein on coat of MS2 bacteriophage as a carrier, chimeric nanoparticles with a linear epitope of porcine reproductive and respiratory syndrome virus, GP5, were constructed, and their immunogenicity determined.  Method  The dominant neutralizing epitope gene sequence on GP5 was inserted into the MS2 protein by overlapping extension PCR. The recombinant vector was to express the chimeric protein through a prokaryotic expression system. The target protein was purified by ammonium sulfate precipitation and gel filtration chromatography followed by characterization with dynamic light scattering and electron microscopy. The immunogenicity of the constructed chimeric nanoparticles was determined by Western blot and animal immunoassay.   Result   The linear epitope was successfully inserted into the target sequence, and the recombinant vector reached a purity greater than 85%. The purified target protein self-assembled in vitro to form uniform chimeric nanoparticles with a diameter of 25–31 nm. After immunizing animals, the chimeric particles produced a high-level of antibodies that reacted with inactivated viruses showing significant immunogenicity.  Conclusion  The MS2 phage coat protein allowed the insertion of 9 exogenous polypeptides (the linear epitope on GP5) and self-assembled in vitro to form the chimeric virus-like particles. Each particle carried the exogenous polypeptides on the surface generating high immunogenicity. The current technology provided a new venue for building other epitopes of porcine reproductive and respiratory syndrome virus or epitopes with longer tandem.
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  • [1]
    WANG J, LIU J Y, SHAO K Y, et al. Porcine reproductive and respiratory syndrome virus activates lipophagy to facilitate viral replication through down-regulation of NDRG1 expression [J]. <italic>Journal of Virology</italic>, 2019, 93(17): e00526. doi: 10.1128/jvi.00526-19
    [2]
    冷雪, 李真光, 王凤雪, 等. 高致病性猪繁殖与呼吸综合征病毒ORF5基因的变异分析 [J]. 吉林农业大学学报, 2012, 34(4):443−448, 453.

    LENG X, LI Z G, WANG F X, et al. Variation analysis of the ORF5 gene of highly pathogenic porcine reproductive and respiratory syndrome virus(HP-PRRSV) [J]. <italic>Journal of Jilin Agricultural University</italic>, 2012, 34(4): 443−448, 453.(in Chinese)
    [3]
    ZHANG X, LI Y, XIAO S Z, et al. High-frequency mutation and recombination are responsible for the emergence of novel porcine reproductive and respiratory syndrome virus in northwest China [J]. <italic>Archives of Virology</italic>, 2019, 164(11): 2725−2733. doi: 10.1007/s00705-019-04373-z
    [4]
    冯延, 郭嘉, 许瑞勤, 等. 针对不同形式猪繁殖与呼吸综合征病毒GP5重组蛋白的抗体中和活性比较 [J]. 畜牧兽医学报, 2018, 49(6):1222−1230. doi: 10.11843/j.issn.0366-6964.2018.06.014

    FENG Y, GUO J, XU R Q, et al. Comparison of neutralizing antibodies induced by PRRSV GP5 recombinant proteins in different forms of truncation [J]. <italic>Acta Veterinaria et Zootechnica Sinica</italic>, 2018, 49(6): 1222−1230.(in Chinese) doi: 10.11843/j.issn.0366-6964.2018.06.014
    [5]
    仇华吉, 周彦君, 童光志. 猪生殖-呼吸综合征病毒蛋白的结构与功能 [J]. 动物医学进展, 2000, 21(2):23−26.

    QIU H J, ZHOU Y J, TONG G Z. Structural and functional aspects of viral proteins of porcine reproductive and respiratory syndrome virus [J]. <italic>Progress in Veterinary Medicine</italic>, 2000, 21(2): 23−26.(in Chinese)
    [6]
    DENAC H, MOSER C, TRATSCHIN J D, et al. An indirect ELISA for the detection of antibodies against porcine reproductive and respiratory syndrome virus using recombinant nucleocapsid protein as antigen [J]. <italic>Journal of Virological Methods</italic>, 1997, 65(2): 169−181. doi: 10.1016/S0166-0934(97)02186-1
    [7]
    PYO H, SEO J, SUH G, et al. Serodiagnosis of porcine reproductive and respiratory syndrome virus infection with the use of glycoprotein 5 antigens [J]. <italic>Canadian Journal of Veterinary Research</italic>, 2010, 74(3): 223−227.
    [8]
    POPESCU L N, TRIBLE B R, CHEN N H, et al. GP5 of porcine reproductive and respiratory syndrome virus (PRRSV) as a target for homologous and broadly neutralizing antibodies [J]. <italic>Veterinary Microbiology</italic>, 2017, 209: 90−96. doi: 10.1016/j.vetmic.2017.04.016
    [9]
    OSTROWSKI M, GALEOTA J A, JAR A M, et al. Identification of neutralizing and nonneutralizing epitopes in the porcine reproductive and respiratory syndrome virus GP5 ectodomain [J]. <italic>Journal of Virology</italic>, 2002, 76(9): 4241−4250. doi: 10.1128/JVI.76.9.4241-4250.2002
    [10]
    陈如敬, 吴学敏, 车勇良, 等. PRRSV GP5抗原表位的串联表达及生物学活性鉴定 [J]. 中国兽医学报, 2014, 34(6):904−907.

    CHEN R J, WU X M, CHE Y L, et al. Expression and characterization of the GP5 encoding epitomes for porcine reproductive and respiratory syndrome virus [J]. <italic>Chinese Journal of Veterinary Science</italic>, 2014, 34(6): 904−907.(in Chinese)
    [11]
    PEABODY D S, MANIFOLD-WHEELER B, MEDFORD A, et al. Immunogenic display of diverse peptides on virus-like particles of RNA phage MS2 [J]. <italic>Journal of Molecular Biology</italic>, 2008, 380(1): 252−263. doi: 10.1016/j.jmb.2008.04.049
    [12]
    ZHAI L K, PEABODY J, PANG Y Y S, et al. A novel candidate HPV vaccine: MS2 phage VLP displaying a tandem HPV L2 peptide offers similar protection in mice to Gardasil-9 [J]. <italic>Antiviral Research</italic>, 2017, 147: 116−123. doi: 10.1016/j.antiviral.2017.09.012
    [13]
    ZHAI L K, YADAV R, KUNDA N K, et al. Oral immunization with bacteriophage MS2-L2 VLPs protects against oral and genital infection with multiple HPV types associated with head & neck cancers and cervical cancer [J]. <italic>Antiviral Research</italic>, 2019, 166: 56−65. doi: 10.1016/j.antiviral.2019.03.012
    [14]
    DONG Y M, CAI J C, CHEN H T, et al. Protection of a novel epitope-RNA VLP double-effective VLP vaccine for foot-and-mouth disease [J]. <italic>Antiviral Research</italic>, 2016, 134: 108−116. doi: 10.1016/j.antiviral.2016.08.020
    [15]
    WANG G Q, LIU Y C, FENG H, et al. Immunogenicity evaluation of MS2 phage-mediated chimeric nanoparticle displaying an immunodominant B cell epitope of foot-and-mouth disease virus [J]. <italic>PeerJ</italic>, 2018, 6: e4823. doi: 10.7717/peerj.4823
    [16]
    SONG H Q, XIONG D, WANG J, et al. A porcine reproductive and respiratory syndrome virus vaccine candidate based on PRRSV glycoprotein 5 and the Toll-like receptor 5 agonist <italic>Salmonella typhimurium</italic> flagellin [J]. <italic>Journal of Molecular Microbiology and Biotechnology</italic>, 2015, 25(1): 56−59. doi: 10.1159/000375496
    [17]
    QIAO S L, JIANG Z Z, TIAN X H, et al. Porcine FcγRIIb mediates enhancement of porcine reproductive and respiratory syndrome virus (PRRSV) infection [J]. <italic>PLoS One</italic>, 2011, 6(12): e28721. doi: 10.1371/journal.pone.0028721
    [18]
    SHI P D, ZHANG L L, WANG J S, et al. Porcine FcεRI mediates porcine reproductive and respiratory syndrome virus multiplication and regulates the inflammatory reaction [J]. <italic>Virologica Sinica</italic>, 2018, 33(3): 249−260. doi: 10.1007/s12250-018-0032-3
    [19]
    SU J, ZHOU L, HE B C, et al. Nsp2 and GP5-M of porcine reproductive and respiratory syndrome virus contribute to targets for neutralizing antibodies [J]. <italic>Virologica Sinica</italic>, 2019, 34(6): 631−640. doi: 10.1007/s12250-019-00149-6
    [20]
    曹佳媛, 田明尧, 辛舒, 等. 以乙型肝炎病毒核心蛋白为载体的PRRSV病毒样颗粒疫苗的构建 [J]. 中国兽医科学, 2015, 45(10):1000−1004.

    CAO J Y, TIAN M Y, XIN S, et al. Construction of American serotype porcine reproductive and respiratory syndrome virus virus-like particles vaccine using hepatitis B virus core protein as a vector [J]. <italic>Chinese Veterinary Science</italic>, 2015, 45(10): 1000−1004.(in Chinese)
    [21]
    张素姣, 王东亮, 李萌, 等. Loop EF区嵌合猪细小病毒B细胞表位对猪圆环病毒2型病毒样颗粒组装的影响 [J]. 中国兽医科学, 2019, 49(2):176−182.

    ZHANG S J, WANG D L, LI M, et al. Effect of chimeric porcine parvovirus B cell epitope in Loop EF region on assembly of porcine <italic>Circovirus</italic> type 2 virus-like particles [J]. <italic>Chinese Veterinary Science</italic>, 2019, 49(2): 176−182.(in Chinese)
    [22]
    蒋春英, 魏建超, 史子学, 等. 展示日本乙型脑炎病毒B细胞表位和T细胞表位的猪细小病毒病毒样颗粒的制备 [J]. 中国兽医科学, 2013, 43(4):358−363.

    JIANG C Y, WEI J C, SHI Z X, et al. Construction of porcine parvovirus-like particles harboring B cell and T cell epitopes of Japanese encephalitis virus [J]. <italic>Chinese Veterinary Science</italic>, 2013, 43(4): 358−363.(in Chinese)
    [23]
    许博, SYBALOVA L M. 基于在乙肝核心抗原免疫显性区域展示流感M2e肽的病毒样颗粒流感候选疫苗的研究: 含4拷贝M2e的广谱保护效力 [J]. 微生物学免疫学进展, 2016, 44(6):47.

    XU B, L M S. Study on a virus-like particle influenza vaccine candidate based on the display of influenza M2e peptides in the immunodominant region of hepatitis B core antigen: broad-spectrum protective efficacy with 4 copies of M2e [J]. <italic>Progress in Microbiology and Immunology</italic>, 2016, 44(6): 47.(in Chinese)
    [24]
    董艳美, 张国广, 汪卫, 等. MS2介导的口蹄疫类病毒颗粒疫苗的研究 [J]. 厦门大学学报(自然科学版), 2013, 52(2):237−243.

    DONG Y M, ZHANG G G, WANG W, et al. Study on MS2 mediated virus-like particles vaccine against foot-and-month disease [J]. <italic>Journal of Xiamen University (Natural Science Edition)</italic>, 2013, 52(2): 237−243.(in Chinese)
    [25]
    王艳梅, 顾敬敏, 雷连成, 等. 猪繁殖与呼吸障碍综合征病毒GP5蛋白羧基端的噬菌体展示及其诱导仔猪产生中和抗体水平 [J]. 中国兽医学报, 2019, 39(5):830−834, 841.

    WANG Y M, GU J M, LEI L C, et al. Construction and induced neutralizing antibody level by recombinant phage expression carboxy terminal of GP5protein from porcine reproductive and respiratory syndrome virus [J]. <italic>Chinese Journal of Veterinary Science</italic>, 2019, 39(5): 830−834, 841.(in Chinese)
    [26]
    孙士鹏, 刘贵建. MS2噬菌体衣壳蛋白与包装位点结合特异性及其生物学应用进展 [J]. 生物技术通讯, 2014, 25(2):259−262. doi: 10.3969/j.issn.1009-0002.2014.02.025

    SUN S P, LIU G J. Biological application of MS2 bacteriophage capsid protein binding specificity of packaging site [J]. <italic>Letters in Biotechnology</italic>, 2014, 25(2): 259−262.(in Chinese) doi: 10.3969/j.issn.1009-0002.2014.02.025
    [27]
    冷超粮, 安同庆, 陈家锃, 等. 高致病性猪繁殖与呼吸综合征病毒GP5蛋白B表位诱导中和抗体能力的研究 [J]. 中国预防兽医学报, 2011, 33(4):297−300. doi: 10.3969/j.issn.1008-0589.2011.04.11

    LENG C L, AN T Q, CHEN J Z, et al. The ability of B epitope in GP5 protein of highly pathogenic PRRSV to induce neutralizing antibody [J]. <italic>Chinese Journal of Preventive Veterinary Medicine</italic>, 2011, 33(4): 297−300.(in Chinese) doi: 10.3969/j.issn.1008-0589.2011.04.11
    [28]
    PLAGEMANN P G W. The primary GP5 neutralization epitope of North American isolates of porcine reproductive and respiratory syndrome virus [J]. <italic>Veterinary Immunology and Immunopathology</italic>, 2004, 102(3): 263−275. doi: 10.1016/j.vetimm.2004.09.011
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