Summary information and primary citation
- PDB-id
-
3ol9;
DSSR-derived features in text and
JSON formats; DNAproDB
- Class
- transferase-RNA
- Method
- X-ray (2.25 Å)
- Summary
- Poliovirus polymerase elongation complex with
3'-deoxy-ctp
- Reference
-
Gong P, Peersen OB (2010): "Structural
basis for active site closure by the poliovirus
RNA-dependent RNA polymerase."
Proc.Natl.Acad.Sci.USA, 107,
22505-22510. doi: 10.1073/pnas.1007626107.
- Abstract
- Positive-strand RNA viruses include a large number of
human and animal pathogens whose essential RNA-dependent
RNA polymerases (RdRPs) share a structurally homologous
core with an encircled active site. RdRPs are targets for
antiviral drug development, but these efforts are hindered
by limited structural information about the RdRP catalytic
cycle. To further our understanding of RdRP function, we
assembled, purified, and then crystallized poliovirus
elongation complexes after multiple rounds of nucleotide
incorporation. Here we present structures capturing the
active polymerase and its nucleotide triphosphate complexes
in four distinct states, leading us to propose a six-state
catalytic cycle involving residues that are highly
conserved among positive-strand RNA virus RdRPs. The
structures indicate that RdRPs use a fully prepositioned
templating base for nucleotide recognition and close their
active sites for catalysis using a novel structural
rearrangement in the palm domain. The data also suggest
that translocation by RDRPs may not be directly linked to
the conformational changes responsible for active site
closure and reopening.