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Molecular characterization of Nipah virus, a newly emergent paramyxovirus
B H Harcourt1, A Tamin, T G Ksiazek
1Respiratory and Enteric Viruses Branch, Centers for Disease Control and Prevention, Atlanta, GA 30333, USA.
Abstract:
Recently, a new paramyxovirus, now known as Nipah virus (NV), emerged in Malaysia and Singapore, causing fatal encephalitis in humans and a respiratory syndrome in pigs. Initial studies had indicated that NV is antigenically and genetically related to Hendra virus (HV). We generated the sequences of the N, P/C/V, M, F, and G genes of NV and compared these sequences with those of HV and other members of the family Paramyxoviridae. The intergenic regions of NV were identical to those of HV, and the gene start and stop sequences of NV were nearly identical to those of HV. The open reading frames (ORFs) for the V and C proteins within the P gene were found in NV, but the ORF encoding a potential short basic protein found in the P gene of HV was not conserved in NV. The N, P, C, V, M, F, and G ORFs in NV have nucleotide homologies ranging from 88% to 70% and predicted amino acid homologies ranging from 92% to 67% in comparison with HV. The predicted fusion cleavage sequence of the F protein of NV had a single amino acid substitution (K to R) in comparison with HV. Phylogenetic analysis demonstrated that although HV and NV are closely related, they are clearly distinct from any of the established genera within the Paramyxoviridae and should be considered a new genus.
Insights
Nipah virus (NV) and Hendra virus (HV) are closely related paramyxoviruses. Phylogenetic analysis reveals they represent a distinct new genus within the Paramyxoviridae family.
Area of Science:
- Virology
- Molecular Biology
- Genetics
Background:
- Nipah virus (NV) emerged in Malaysia and Singapore, causing severe human encephalitis and porcine respiratory illness.
- Initial observations suggested a relationship between NV and Hendra virus (HV).
Purpose of the Study:
- To genetically characterize Nipah virus (NV).
- To compare NV with Hendra virus (HV) and other paramyxoviruses.
- To determine the taxonomic classification of NV.
Main Methods:
- Sequencing of N, P/C/V, M, F, and G genes of NV.
- Comparative sequence analysis of NV genes with HV and other Paramyxoviridae.
- Phylogenetic analysis.
Main Results:
- NV shares identical intergenic regions and nearly identical gene start/stop sequences with HV.
- Nucleotide homology between NV and HV ranges from 70% to 88%; amino acid homology ranges from 67% to 92%.
- Phylogenetic analysis indicates NV and HV are distinct from established Paramyxoviridae genera.
Conclusions:
- Nipah virus (NV) and Hendra virus (HV) are closely related but represent a new genus.
- The genetic data supports the classification of NV and HV as a distinct genus within the Paramyxoviridae family.
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