Nucleotide sequence of the gene encoding respiratory syncytial virus matrix protein

Journal of Virology
|April 1, 1984
PubMed

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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