Single-molecule studies contrast ordered DNA replication with stochastic translesion synthesis

Author:

Zhao Gengjing1,Gleave Emma S1,Lamers Meindert Hugo1ORCID

Affiliation:

1. MRC laboratory of Molecular Biology, Cambridge, United Kingdom

Abstract

High fidelity replicative DNA polymerases are unable to synthesize past DNA adducts that result from diverse chemicals, reactive oxygen species or UV light. To bypass these replication blocks, cells utilize specialized translesion DNA polymerases that are intrinsically error prone and associated with mutagenesis, drug resistance, and cancer. How untimely access of translesion polymerases to DNA is prevented is poorly understood. Here we use co-localization single-molecule spectroscopy (CoSMoS) to follow the exchange of the E. coli replicative DNA polymerase Pol IIIcore with the translesion polymerases Pol II and Pol IV. We find that in contrast to the toolbelt model, the replicative and translesion polymerases do not form a stable complex on one clamp but alternate their binding. Furthermore, while the loading of clamp and Pol IIIcore is highly organized, the exchange with the translesion polymerases is stochastic and is not determined by lesion-recognition but instead a concentration-dependent competition between the polymerases.

Funder

Medical Research Council

Publisher

eLife Sciences Publications, Ltd

Subject

General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

Reference64 articles.

1. Frequent exchange of the DNA polymerase during bacterial chromosome replication;Beattie;eLife,2017

2. Pivotal role of the beta-clamp in translesion DNA synthesis and mutagenesis in E. coli cells;Becherel;DNA Repair,2002

3. Mechanism of DNA polymerase II-mediated frameshift mutagenesis;Becherel;PNAS,2001

4. Purification and characterization of an inducible Escherichia coli DNA polymerase capable of insertion and bypass at abasic lesions in DNA;Bonner;The Journal of Biological Chemistry,1988

5. Structural basis for recruitment of translesion DNA polymerase Pol IV/DinB to the beta-clamp;Bunting;The EMBO Journal,2003

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