Susceptible cell lines for the production of porcine reproductive and respiratory syndrome virus by stable transfection of sialoadhesin and CD163

被引:52
作者
Delrue, Iris [1 ]
Van Gorp, Hanne [1 ]
Van Doorsselaere, Jan [2 ]
Delputte, Peter L. [1 ]
Nauwynck, Hans J. [1 ]
机构
[1] Univ Ghent, Fac Vet Med, Dept Virol Parasitol & Immunol, B-9820 Merelbeke, Belgium
[2] KATHO Catholic Univ, Dept Hlth Care & Biotechnol, Coll SW Flanders, B-8800 Roeselare, Belgium
关键词
MYSTERY SWINE DISEASE; MONOCLONAL-ANTIBODIES; SIALIC-ACID; ARTERIVIRUS INFECTION; ALVEOLAR MACROPHAGES; ATTACHMENT; EXPRESSION; RECEPTOR; MONOCYTES/MACROPHAGES; INTERNALIZATION;
D O I
10.1186/1472-6750-10-48
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
Background: Porcine reproductive and respiratory syndrome virus (PRRSV) causes major economic losses in the pig industry worldwide. In vivo, the virus infects a subpopulation of tissue macrophages. In vitro, PRRSV only replicates in primary pig macrophages and African green monkey kidney derived cells, such as Marc-145. The latter is currently used for vaccine production. However, since virus entry in Marc-145 cells is different compared to entry in primary macrophages, specific epitopes associated with virus entry could potentially alter upon growth on Marc-145 cells. To avoid this, we constructed CHO and PK15 cell lines recombinantly expressing the PRRSV receptors involved in virus entry into macrophages, sialoadhesin (Sn) and CD163 (CHOSn-CD163 and PK15(Sn-CD163)) and evaluated their potential for production of PRRSV. Results: Detailed analysis of PRRSV infection revealed that LV and VR-2332 virus particles could attach to and internalize into the CHOSn-CD163 and PK15Sn-CD163 cells. Initially, this occurred less efficiently for macrophage grown virus than for Marc-145 grown virus. Upon internalization, disassembly of the virus particles was observed. The two cell lines could be infected with PRRSV strains LV and VR-2332. However, it was observed that Marc-145 grown virus infected the cells more efficiently than macrophage grown virus. If the cells were treated with neuraminidase to remove cis-acting sialic acids that hinder the interaction of the virus with Sn, the amount of infected cells with macrophage grown virus increased. Comparison of both cell lines showed that the PK15(Sn-CD163) cell line gave in general better results than the CHOSn-CD163 cell line. Only 2 out of 5 PRRSV strains replicated well in CHOSn-CD163 cells. Furthermore, the virus titer of all 5 PRRSV strains produced after passaging in PK15(Sn-CD163) cells was similar to the virus titer of those strains produced in Marc-145 cells. Analysis of the sequence of the structural proteins of original virus and virus grown for 5 passages on PK15(Sn-CD163) cells showed either no amino acid (aa) changes (VR-2332 and 07V063), one aa (LV), two aa (08V194) or three aa (08V204) changes. None of these changes are situated in known neutralizing epitopes. Conclusions: A PRRSV susceptible cell line was constructed that can grow virus to similar levels compared to currently available cell lines. Mutations induced by growth on this cell lines were either absent or minimal and located outside known neutralizing epitopes. Together, the results show that this cell line can be used to produce vaccine virus and for PRRSV virus isolation.
引用
收藏
页数:12
相关论文
共 50 条
  • [31] Development of CD163 receptor-based enzyme-linked immunosorbent assay for diagnosis of porcine reproductive and respiratory syndrome virus
    Deb, Rajib
    Yadav, Ajay Kumar
    Sengar, Gyanendra Singh
    Sonowal, Joyshikh
    Lalita, D.
    Pegu, Seema Rani
    Singh, Indra
    Linda, Ningthoukhongjam
    Das, Pranab Jyoti
    Kumar, Satish
    Pal, Prasanna
    Paul, Souvik
    Rajkhowa, Swaraj
    Gupta, Vivek Kumar
    3 BIOTECH, 2022, 12 (11)
  • [32] The porcine reproductive and respiratory syndrome virus requires trafficking through CD163-positive early endosomes, but not late endosomes, for productive infection
    Van Gorp, Hanne
    Van Breedam, Wander
    Delputte, Peter L.
    Nauwynck, Hans J.
    ARCHIVES OF VIROLOGY, 2009, 154 (12) : 1939 - 1943
  • [33] MicroRNA ssc-miR-124a exhibits antiviral activity against porcine reproductive and respiratory syndrome virus via suppression of host genes CD163
    Li, Na
    Huang, Ke
    Chen, Yujing
    Huang, Zhengyang
    Zhang, Yiyi
    Leng, ChaoLiang
    Liu, Yangkun
    Shi, Jianzhou
    Xiao, Shuqi
    Yao, Lunguang
    VETERINARY MICROBIOLOGY, 2021, 261
  • [34] Associations of natural variation in the CD163 and other candidate genes on host response of nursery pigs to porcine reproductive and respiratory syndrome virus infection
    Dong, Qian
    Dunkelberger, Jenelle
    Lim, Kyu-Sang
    Lunney, Joan K.
    Tuggle, Christopher K.
    Rowland, Raymond R. R.
    Dekkers, Jack C. M.
    JOURNAL OF ANIMAL SCIENCE, 2021, 99 (10)
  • [35] The Minor Envelope Glycoproteins GP2a and GP4 of Porcine Reproductive and Respiratory Syndrome Virus Interact with the Receptor CD163
    Das, Phani B.
    Dinh, Phat X.
    Ansari, Israrul H.
    de Lima, Marcelo
    Osorio, Fernando A.
    Pattnaik, Asit K.
    JOURNAL OF VIROLOGY, 2010, 84 (04) : 1731 - 1740
  • [36] Major Vault Protein Inhibits Porcine Reproductive and Respiratory Syndrome Virus Infection in CRL2843CD163 Cell Lines and Primary Porcine Alveolar Macrophages
    Wu, Xiaoping
    Fang, Junyang
    Huang, Qiuping
    Chen, Xu
    Guo, Zhongyi
    Tian, Lingyujia
    Zhou, Enmin
    Chen, Jianxin
    Mu, Yang
    Du, Taofeng
    VIRUSES-BASEL, 2021, 13 (11):
  • [37] Over-expression of CD163, CD169, and CD151 is not sufficient to improve the susceptibility to porcine reproductive and respiratory syndrome virus infection in transgenic mice
    Cui, Zhengzhi
    Niu, Shuaishuai
    Liu, Jingjing
    Xu, Lei
    Dai, Yunping
    Li, Ning
    Kang, Youmin
    Zhang, Linlin
    Zhou, Lei
    Yu, Shuyang
    SCIENCE BULLETIN, 2017, 62 (24) : 1634 - 1636
  • [38] Direct Interaction Between CD163 N-Terminal Domain and MYH9 C-Terminal Domain Contributes to Porcine Reproductive and Respiratory Syndrome Virus Internalization by Permissive Cells
    Hou, Gaopeng
    Xue, Biyun
    Li, Liangliang
    Nan, Yuchen
    Zhang, Lu
    Li, Kuokuo
    Zhao, Qin
    Hiscox, Julian A.
    Stewart, James P.
    Wu, Chunyan
    Wang, Jingfei
    Zhou, En-Min
    FRONTIERS IN MICROBIOLOGY, 2019, 10
  • [39] Replacement of Porcine CD163 Scavenger Receptor Cysteine-Rich Domain 5 with a CD163-Like Homolog Confers Resistance of Pigs to Genotype 1 but Not Genotype 2 Porcine Reproductive and Respiratory Syndrome Virus
    Wells, Kevin D.
    Bardot, Rachel
    Whitworth, Kristin M.
    Trible, Benjamin R.
    Fang, Ying
    Mileham, Alan
    Kerrigan, Maureen A.
    Samuel, Melissa S.
    Prather, Randall S.
    Rowland, Raymond R. R.
    JOURNAL OF VIROLOGY, 2017, 91 (02)
  • [40] Human telomerase reverse transcriptase-immortalized porcine monomyeloid cell lines for the production of porcine reproductive and respiratory syndrome virus
    Sagong, Mingeun
    Park, Choi-Kyu
    Kim, Seong-Hee
    Lee, Kyoung-Ki
    Lee, O-Soo
    Lee, Du Sik
    Cha, Se-Yeoun
    Lee, Changhee
    JOURNAL OF VIROLOGICAL METHODS, 2012, 179 (01) : 26 - 32