Tetrameric UvrD Helicase Is Located at the E. Coli Replisome due to Frequent Replication Blocks

Adam J. M. Wollman, Aisha H. Syeda,Jamieson A. L. Howard, Alex Payne-Dwyer,Andrew Leech, Dominika Warecka, Colin Guy,Peter McGlynn, Michelle Hawkins,Mark C. Leake

JOURNAL OF MOLECULAR BIOLOGY(2024)

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摘要
DNA replication in all organisms must overcome nucleoprotein blocks to complete genome duplication. Accessory replicative helicases in Escherichia coli, Rep and UvrD, help remove these blocks and aid the re-initiation of replication. Mechanistic details of Rep function have emerged from recent live cell stud-ies; however, the division of UvrD functions between its activities in DNA repair and role as an accessory helicase remain unclear in live cells. By integrating super-resolved single-molecule fluorescence micro-scopy with biochemical analysis, we find that UvrD self-associates into tetrameric assemblies and, unlike Rep, is not recruited to a specific replisome protein despite being found at approximately 80% of replica-tion forks. Instead, its colocation with forks is likely due to the very high frequency of replication blocks composed of DNA-bound proteins, including RNA polymerase and factors involved in repairing DNA dam-age. Deleting rep and DNA repair factor genes mutS and uvrA, and inhibiting transcription through RNA polymerase mutation and antibiotic inhibition, indicates that the level of UvrD at the fork is dependent on UvrD's function. Our findings show that UvrD is recruited to sites of nucleoprotein blocks via different mechanisms to Rep and plays a multi-faceted role in ensuring successful DNA replication.(c) 2023 The Authors. Published by Elsevier Ltd. This is an open access article under the CC BY license (http://creativecom-mons.org/licenses/by/4.0/).
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关键词
UvrD helicase,genome stability,replication,polymerase,fluorescence microscopy,single molecule
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