Summary information and primary citation
- PDB-id
-
7om6;
DSSR-derived features in text and
JSON formats; DNAproDB
- Class
- viral protein
- Method
- X-ray (2.18 Å)
- Summary
- Thosea asigna virus rdrp domain in complex with
RNA
- Reference
-
Ferrero DS, Falqui M, Verdaguer N (2021): "Snapshots
of a Non-Canonical RdRP in Action." Viruses,
13. doi: 10.3390/v13071260.
- Abstract
- RNA viruses typically encode their own RNA-dependent
RNA polymerase (RdRP) to ensure genome replication and
transcription. The closed "right hand" architecture of
RdRPs encircles seven conserved structural motifs (A to G)
that regulate the polymerization activity. The four palm
motifs, arranged in the sequential order A to D, are common
to all known template dependent polynucleotide polymerases,
with motifs A and C containing the catalytic aspartic acid
residues. Exceptions to this design have been reported in
members of the Permutotetraviridae and Birnaviridae
families of positive single stranded (+ss) and
double-stranded (ds) RNA viruses, respectively. In these
enzymes, motif C is located upstream of motif A, displaying
a permuted C-A-B-D connectivity. Here we study the details
of the replication elongation process in the non-canonical
RdRP of the <i>Thosea asigna</i> virus (TaV),
an insect virus from the Permutatetraviridae family. We
report the X-ray structures of three replicative complexes
of the TaV polymerase obtained with an RNA template-primer
in the absence and in the presence of incoming rNTPs. The
structures captured different replication events and
allowed to define the critical interactions involved in:
(i) the positioning of the acceptor base of the template
strand, (ii) the positioning of the 3'-OH group of the
primer nucleotide during RNA replication and (iii) the
recognition and positioning of the incoming nucleotide.
Structural comparisons unveiled a closure of the active
site on the RNA template-primer binding, before rNTP entry.
This conformational rearrangement that also includes the
repositioning of the motif A aspartate for the catalytic
reaction to take place is maintained on rNTP and metal ion
binding and after nucleotide incorporation, before
translocation.