Kinetic Mechanism of Initiation by RepD as a Part of Asymmetric, Rolling Circle Plasmid Unwinding
Author:
Affiliation:
1. MRC National Institute for Medical Research, The Ridgeway, Mill Hill, London NW7 1AA, U.K.
Publisher
American Chemical Society (ACS)
Subject
Biochemistry
Link
https://pubs.acs.org/doi/pdf/10.1021/bi300172p
Reference22 articles.
1. Determination of Sequence Specificity between a Plasmid Replication Initiator Protein and the Origin of Replication
2. Initiation of rolling-circle replication in pT181 plasmid: initiator protein enhances cruciform extrusion at the origin.
3. In vitro studies of the initiation of staphylococcal plasmid replication. Specificity of RepD for its origin (oriD) and characterization of the Rep-ori tyrosyl ester intermediate.
4. Why is the initiation nick site of an AT-rich rolling circle plasmid at the tip of a GC-rich cruciform?
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1. Single-molecule studies of helicases and translocases in prokaryotic genome-maintenance pathways;DNA Repair;2021-12
2. Dynamics of DNA nicking and unwinding by the RepC–PcrA complex;Nucleic Acids Research;2020-01-13
3. oriD structure controls RepD initiation during rolling-circle replication;Scientific Reports;2018-01-19
4. Force and twist dependence of RepC nicking activity on torsionally-constrained DNA molecules;Nucleic Acids Research;2016-08-03
5. Monomeric PcrA helicase processively unwinds plasmid lengths of DNA in the presence of the initiator protein RepD;Nucleic Acids Research;2013-03-27
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