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Characterization of a murine coronavirus defective interfering RNA internal cis-acting replication signal

Y N Kim1, S Makino

  • 1Department of Microbiology, University of Texas at Austin 78712-1095, USA.

Journal of Virology
|August 1, 1995
PubMed

Insights

The internal 0.13-kb sequence in mouse hepatitis virus (MHV) defective interfering (DI) RNA is crucial for replication. Its RNA secondary structure, particularly the stem-loop, dictates viral RNA synthesis efficiency and temperature dependence.

Area of Science:

  • Virology
  • Molecular Biology
  • RNA Structure

Background:

  • Mouse hepatitis virus (MHV) defective interfering (DI) RNAs require specific genomic regions for replication.
  • An internal 0.13-kb region is known to be essential, alongside terminal sequences.

Purpose of the Study:

  • To investigate the role of the internal 0.13-kb region in MHV RNA replication.
  • To determine how sequence variations and secondary structures within this region affect viral replication.

Main Methods:

  • Construction and replication analysis of various DI RNAs with different 0.13-kb regions in MHV-infected cells.
  • Secondary structure analysis of the 0.13-kb region using computer-based methods.
  • Temperature-shift experiments to assess replication dynamics.

Main Results:

  • Most engineered DI RNAs replicated, except for MRP-A59, which contained the MHV-A59 0.13-kb region and failed to replicate at lower temperatures.
  • MRP-A59 replication was temperature-dependent, occurring at 39.5°C but not 37°C or 35°C.
  • A minimum of 57 nucleotides in the MHV-JHM 0.13-kb region was required for positive-strand stem-loop structure maintenance and biological function.

Conclusions:

  • The RNA secondary structure of the internal 0.13-kb region is critical for positive-strand MHV RNA synthesis.
  • Sequence variations, like those in MHV-A59, can alter stem-loop formation and impair replication.
  • The structure, not just the sequence, of this internal region plays a key role in MHV replication efficiency.

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