Polymerase exchange on single DNA molecules reveals processivity clamp control of translesion synthesis.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 24825884.
- Also identified by DOI 10.1073/pnas.1321076111 and PMC identifier 4040570.
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Abstract
Translesion synthesis (TLS) by Y-family DNA polymerases alleviates replication stalling at DNA damage. Ring-shaped processivity clamps play a critical but ill-defined role in mediating exchange between Y-family and replicative polymerases during TLS. By reconstituting TLS at the single-molecule level, we show that the Escherichia coli β clamp can simultaneously bind the replicative polymerase (Pol) III and the conserved Y-family Pol IV, enabling exchange of the two polymerases and rapid bypass of a Pol IV cognate lesion. Furthermore, we find that a secondary contact between Pol IV and β limits Pol IV synthesis under normal conditions but facilitates Pol III displacement from the primer terminus following Pol IV induction during the SOS DNA damage response. These results support a role for secondary polymerase clamp interactions in regulating exchange and establishing a polymerase hierarchy.
Medical subject headings
- DNA
- DNA Polymerase III
- DNA Polymerase beta
- Models, Genetic
- SOS Response, Genetics