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Structural basis for processive daughter-strand synthesis and proofreading by the human leading-strand DNA polymerase Pol ε.

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Peer-reviewed

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Abstract

During chromosome replication, the nascent leading strand is synthesized by DNA polymerase epsilon (Pol ε), which associates with the sliding clamp processivity factor proliferating cell nuclear antigen (PCNA) to form a processive holoenzyme. For high-fidelity DNA synthesis, Pol ε relies on nucleotide selectivity and its proofreading ability to detect and excise a misincorporated nucleotide. Here, we present cryo-electron microscopy (cryo-EM) structures of human Pol ε in complex with PCNA, DNA and an incoming nucleotide, revealing how Pol ε associates with PCNA through its PCNA-interacting peptide box and additional unique features of its catalytic domain. Furthermore, by solving a series of cryo-EM structures of Pol ε at a mismatch-containing DNA, we elucidate how Pol ε senses and edits a misincorporated nucleotide. Our structures delineate steps along an intramolecular switching mechanism between polymerase and exonuclease activities, providing the basis for a proofreading mechanism in B-family replicative polymerases.

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Acknowledgements: We thank J. Shi for operation of the Medical Research Council (MRC) Laboratory of Molecular Biology (LMB) baculovirus facility and F. Fassetta (MRC LMB) for baculovirus generation and protein expression; M. Jenkyn-Bedford (MRC LMB) for recombinant monovalent streptavidin; S. Chen, G. Sharov, G. Cannone, A. Yeates and B. Ahsan for smooth running of the MRC LMB EM facility; and J. Grimmett, T. Darling and I. Clayson for maintenance of scientific computing facilities. We are grateful to K. Nguyen, S. Zhang, D. Czernecki and all members of the Yeeles lab for discussions and comments on the manuscript. This work was supported by the MRC as part of UK Research and Innovation (MRC grant MC_UP_1201/12 to J.T.P.Y.). J.J.R. is supported by a Herchel Smith Scholarship.

Journal Title

Nat Struct Mol Biol

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Journal ISSN

1545-9993
1545-9985

Volume Title

31

Publisher

Springer Science and Business Media LLC

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Except where otherwised noted, this item's license is described as http://creativecommons.org/licenses/by/4.0/