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Contribution to pathogenesis of accessory proteins of deadly human coronaviruses
Jesus Hurtado-Tamayo1, Ricardo Requena-Platek1, Luis Enjuanes1
1Department of Molecular and Cell Biology, National Center of Biotechnology (CNB-CSIC), Campus Universidad Autónoma de Madrid, Madrid, Spain.
Abstract:
Coronaviruses (CoVs) are enveloped and positive-stranded RNA viruses with a large genome (∼ 30kb). CoVs include essential genes, such as the replicase and four genes coding for structural proteins (S, M, N and E), and genes encoding accessory proteins, which are variable in number, sequence and function among different CoVs. Accessory proteins are non-essential for virus replication, but are frequently involved in virus-host interactions associated with virulence. The scientific literature on CoV accessory proteins includes information analyzing the effect of deleting or mutating accessory genes in the context of viral infection, which requires the engineering of CoV genomes using reverse genetics systems. However, a considerable number of publications analyze gene function by overexpressing the protein in the absence of other viral proteins. This ectopic expression provides relevant information, although does not acknowledge the complex interplay of proteins during virus infection. A critical review of the literature may be helpful to interpret apparent discrepancies in the conclusions obtained by different experimental approaches. This review summarizes the current knowledge on human CoV accessory proteins, with an emphasis on their contribution to virus-host interactions and pathogenesis. This knowledge may help the search for antiviral drugs and vaccine development, still needed for some highly pathogenic human CoVs.
Insights
Coronaviruses (CoVs) have accessory proteins that, while not essential for replication, significantly impact virus-host interactions and disease severity. Understanding these proteins aids in developing new antiviral drugs and vaccines for human CoVs.
Area of Science:
- Virology
- Molecular Biology
- Immunology
Background:
- Coronaviruses (CoVs) are enveloped, positive-stranded RNA viruses with large genomes.
- Accessory proteins are non-essential for CoV replication but play key roles in virulence and host interactions.
- Existing research often uses distinct methods (gene deletion vs. ectopic expression) for studying accessory proteins.
Purpose of the Study:
- To critically review current knowledge on human CoV accessory proteins.
- To emphasize their role in virus-host interactions and pathogenesis.
- To identify potential targets for antiviral drug and vaccine development.
Main Methods:
- Literature review and critical analysis of existing scientific publications.
- Examination of studies employing reverse genetics systems (gene deletion/mutation).
- Analysis of studies utilizing ectopic protein expression.
Main Results:
- Accessory proteins significantly influence CoV pathogenesis and virulence.
- Discrepancies in findings can arise from different experimental methodologies.
- Human CoV accessory proteins are crucial mediators of virus-host interactions.
Conclusions:
- A comprehensive understanding of CoV accessory proteins is vital for combating viral infections.
- Further research into these proteins can guide the development of novel therapeutics.
- Targeting accessory proteins may offer a strategy for new antiviral drugs and vaccines against pathogenic human CoVs.
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