Infection of HeLa cells by avian infectious bronchitis virus is dependent on cell status
1National Key Laboratory of Agricultural Microbiology, College of Veterinary Medicine, Huazhong Agricultural University, Wuhan, People's Republic of China.
Abstract:
To investigate the adaptation of avian infectious bronchitis virus (IBV) in a human cell line may be beneficial to understanding the potential mechanisms of coronavirus interspecies infection. The current study addressed the poor replication of IBV in the HeLa human cell line demonstrated in previous reports. We showed that IBV strains M41, H52, H120 and Gray could be propagated in HeLa cells with distinct cytopathic effect. The virus titre in freshly dispersed HeLa cells was 1000-fold higher than in cell monolayers. Trypsin was not the determinant for the viral replication, suggesting that the restriction of IBV replication in HeLa cells is the result of intracellular events rather than the binding to or fusion with host cells. These IBV strains replicated to an average titre of 10(3.4+/-0.2)/0.1 ml median tissue culture infectious doses in freshly dispersed HeLa cells and maintained this titre for the first 12 passages. Then an approximately 10-fold increase (10(4.20+/-0.19)/0.1 ml) occurred in passage 13, which was maintained to passage 16, after which there was another, bigger rise to 10(6.6+/-0.3)/0.1 ml in passage 17. This titre was maintained until passage 24 when the experiment was terminated. The IBV M41 S1 gene was amplified and sequenced for passages 0, 5 and 21. There was only one amino acid replacement in the S1 protein, in passage 21. The presence of sialic acid on HeLa cells contributed to efficient virus replication, while human aminopeptidase N was not involved in the infection. Haemagglutinin activity gradually reduced with increased passages. These results indicated that the virus adaptation would probably be determined by host cell modification such as receptor glycosylation and different receptor utilization instead of viral gene mutation.
Insights
Avian infectious bronchitis virus (IBV) adapted to replicate in human HeLa cells, showing increased viral titers over passages. Adaptation involved host cell changes like sialic acid presence, not viral gene mutation, offering insights into coronavirus interspecies infection.
Area of Science:
- Virology
- Cell Biology
- Infectious Diseases
Background:
- Avian infectious bronchitis virus (IBV) typically shows poor replication in human cell lines.
- Understanding coronavirus interspecies transmission mechanisms is crucial for public health.
- Previous studies noted limited IBV replication in HeLa cells.
Purpose of the Study:
- To investigate the adaptation of IBV in the human HeLa cell line.
- To identify factors contributing to improved IBV replication in HeLa cells.
- To elucidate mechanisms of coronavirus adaptation and interspecies infection.
Main Methods:
- Propagation of IBV strains (M41, H52, H120, Gray) in HeLa cells over multiple passages.
- Quantification of viral titers using median tissue culture infectious doses.
- Analysis of viral S1 gene for mutations.
- Investigation of cell surface molecules (sialic acid, human aminopeptidase N) and haemagglutinin activity.
Main Results:
- IBV strains successfully propagated in HeLa cells, with distinct cytopathic effects.
- Virus titers significantly increased with serial passages, especially after passage 17.
- Adaptation was associated with the presence of sialic acid on HeLa cells and reduced haemagglutinin activity.
- Only one amino acid change was observed in the S1 protein across passages, suggesting limited viral mutation.
Conclusions:
- IBV can adapt to replicate efficiently in human HeLa cells.
- Virus adaptation is primarily driven by host cell modifications, such as receptor glycosylation and utilization.
- Viral gene mutation plays a minor role in IBV adaptation to this human cell line.
- Findings provide insights into coronavirus interspecies infection mechanisms.
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