Summary information and primary citation
- PDB-id
-
8wpf;
DSSR-derived features in text and
JSON formats; DNAproDB
- Class
- viral protein
- Method
- cryo-EM (3.0 Å)
- Summary
- Structure of monkeypox virus polymerase complex
f8-a22-e4-h5 with exogenous DNA bearing one abasic
site
- Reference
-
Wang X, Ma L, Li N, Gao N (2023): "Structural
insights into the assembly and mechanism of mpox virus
DNA polymerase complex F8-A22-E4-H5."
Mol.Cell, 83, 4398. doi:
10.1016/j.molcel.2023.10.038.
- Abstract
- The DNA replication of mpox virus is performed by the
viral polymerase F8 and also requires other viral factors,
including processivity factor A22, uracil DNA glycosylase
E4, and phosphoprotein H5. However, the molecular roles of
these viral factors remain unclear. Here, we characterize
the structures of F8-A22-E4 and F8-A22-E4-H5 complexes in
the presence of different primer-template DNA substrates.
E4 is located upstream of F8 on the template
single-stranded DNA (ssDNA) and is catalytically active,
highlighting a functional coupling between DNA
base-excision repair and DNA synthesis. Moreover, H5, in
the form of tetramer, binds to the double-stranded DNA
(dsDNA) region downstream of F8 in a similar position as
PCNA (proliferating cell nuclear antigen) does in
eukaryotic polymerase complexes. Omission of H5 or
disruption of its DNA interaction showed a reduced
synthesis of full-length DNA products. These structures
provide snapshots for the working cycle of the polymerase
and generate insights into the mechanisms of these
essential factors in viral DNA replication.