Rad53 limits CMG helicase uncoupling from DNA synthesis at replication forks Journal Article


Authors: Devbhandari, S.; Remus, D.
Article Title: Rad53 limits CMG helicase uncoupling from DNA synthesis at replication forks
Abstract: The coordination of DNA unwinding and synthesis at replication forks promotes efficient and faithful replication of chromosomal DNA. Disruption of the balance between helicase and polymerase activities during replication stress leads to fork progression defects and activation of the Rad53 checkpoint kinase, which is essential for the functional maintenance of stalled replication forks. The mechanism of Rad53-dependent fork stabilization is not known. Using reconstituted budding yeast replisomes, we show that mutational inactivation of the leading strand DNA polymerase, Pol ε, dNTP depletion, and chemical inhibition of DNA polymerases cause excessive DNA unwinding by the replicative DNA helicase, CMG, demonstrating that budding yeast replisomes lack intrinsic mechanisms that control helicase–polymerase coupling at the fork. Importantly, we find that the Rad53 kinase restricts excessive DNA unwinding at replication forks by limiting CMG helicase activity, suggesting a mechanism for fork stabilization by the replication checkpoint. © 2020, The Author(s), under exclusive licence to Springer Nature America, Inc.
Keywords: controlled study; unclassified drug; nonhuman; dna polymerase; dna replication; dna synthesis; enzyme activity; checkpoint kinase 2; dna helicase; dna denaturation; budding yeast; dna directed dna polymerase epsilon; replisome; parathion; priority journal; article; cmg helicase
Journal Title: Nature Structural and Molecular Biology
Volume: 27
Issue: 5
ISSN: 1545-9993
Publisher: Nature Publishing Group  
Date Published: 2020-05-01
Start Page: 461
End Page: 471
Language: English
DOI: 10.1038/s41594-020-0407-7
PUBMED: 32341532
PROVIDER: scopus
PMCID: PMC7225081
DOI/URL:
Notes: Article -- Export Date: 1 June 2020 -- Source: Scopus
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  1. Dirk Remus
    21 Remus