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Published on: November 1, 2011
Nucleotide sequence of the gene encoding respiratory syncytial virus matrix protein
Abstract:
The amino acid sequence of the matrix protein of the human respiratory syncytial virus (RS virus) was deduced from the sequence of a cDNA insert in a recombinant plasmid harboring an almost full-length copy of this gene. It specifically hybridized to a single 1,050-base mRNA from infected cells. The recombinant containing 944 base pairs of RS viral matrix protein gene sequence lacked five nucleotides corresponding to the 5' end of the mRNA. The nucleotide sequence of the 5' end of the mRNA was determined by the dideoxy sequencing method and found to be 5' NGGGC, wherein the C residue is one nucleotide upstream of the cloned viral sequence. The initiator ATG codon for the matrix protein is embedded in an AATATGG sequence similar to the canonical PXXATGG sequence present around functional eucaryotic translation initiation codons. There is no conserved sequence upstream of the polyadenylate tail, unlike vesicular stomatitis virus and Sendai virus, in which four nucleotides upstream of the polyadenylate tail are conserved in all genes. There is no equivalent of the eucaryotic polyadenylation signal AAUAAA upstream of the polyadenylate tail. The matrix protein of 28,717 daltons has 256 amino acids. It is relatively basic and moderately hydrophobic. There are two clusters of hydrophobic amino acid residues in the C-terminal third of the protein that could potentially interact with the membrane components of the infected cell. The matrix protein has no homology with the matrix proteins of other negative-strand RNA viruses, implying that RS virus has undergone extensive evolutionary divergence. A second open reading frame potentially encoding a protein of 75 amino acids and partially overlapping the C terminus of the matrix protein was also identified.
Insights
Researchers sequenced the human respiratory syncytial virus (RS virus) matrix protein, revealing its 256-amino acid structure. This protein shows no homology to other viruses, suggesting significant evolutionary divergence.
Area of Science:
- Virology
- Molecular Biology
- Genetics
Background:
- Human respiratory syncytial virus (RS virus) is a significant respiratory pathogen.
- The matrix protein is a key component of the RS virus virion structure.
- Understanding viral protein sequences is crucial for comprehending viral replication and pathogenesis.
Purpose of the Study:
- To determine the complete amino acid sequence of the RS virus matrix protein.
- To analyze the structural and functional properties of the RS virus matrix protein.
- To investigate the evolutionary relationship of the RS virus matrix protein with other viruses.
Main Methods:
- Deduction of amino acid sequence from cDNA of a recombinant plasmid containing the RS viral matrix protein gene.
- Hybridization to identify the specific mRNA transcript.
- Dideoxy sequencing method to determine the 5' end nucleotide sequence of the mRNA.
- Bioinformatic analysis of protein properties and homology.
Main Results:
- The complete amino acid sequence of the RS virus matrix protein (256 amino acids, 28,717 daltons) was determined.
- The protein is moderately hydrophobic with two hydrophobic clusters in the C-terminal third.
- No homology was found between the RS virus matrix protein and those of other negative-strand RNA viruses.
- A second potential open reading frame encoding a 75-amino acid protein was identified.
Conclusions:
- The RS virus matrix protein possesses unique structural features.
- The lack of homology suggests extensive evolutionary divergence of RS virus.
- The identified hydrophobic regions may play a role in membrane interaction.
- The potential for a second overlapping protein warrants further investigation.
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