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Structure of poliovirus replicative intermediate RNA. Electron microscope analysis of RNA cross-linked in vivo with

Insights

Poliovirus replicative intermediate RNA lacks extensive duplex structure in vivo. Nascent chains are transiently hydrogen-bonded to templates, not forming stable double-stranded regions during viral RNA synthesis.

Area of Science:

  • Molecular Biology
  • Virology
  • Structural Biology

Background:

  • Poliovirus replicative intermediate (RI) RNA structure is crucial for viral replication.
  • Previous studies suggested a double-stranded backbone in purified RI, but its in vivo state remained unclear.

Purpose of the Study:

  • To investigate the in vivo structure of poliovirus replicative intermediate (RI) RNA.
  • To determine the extent of base-pairing within RI during active viral RNA synthesis.

Main Methods:

  • In vivo cross-linking of RI RNA using 4'-aminomethyl-4,5',8-trimethylpsoralen (AMT).
  • Electron microscopy of purified, cross-linked RI and double-stranded RNA (RF).
  • Analysis of viral RNA synthesis inhibition and AMT binding.

Main Results:

  • Undenatured RI showed a double-stranded backbone with nascent single-stranded tails, which disappeared upon denaturation.
  • In vivo cross-linking confirmed transient hydrogen-bonding, indicating minimal duplex structure in RI.
  • In vitro cross-linking of RF RNA revealed a minimum of one interstrand cross-link per 80 base pairs.

Conclusions:

  • Poliovirus RI RNA exists primarily as single strands with transient base-pairing to the template in vivo.
  • The observed double-stranded structure in purified RI is an artifact of purification procedures.
  • Extensive base-pairing does not occur in poliovirus RI RNA within infected cells.

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