Dmowski, Michal and Makiela-Dzbenska, Karolina and Sharma, Sushma and Chabes, Andrei and Fijalkowska, Iwona J. (2023) Impairment of the non-catalytic subunit Dpb2 of DNA Pol ɛ results in increased involvement of Pol δ on the leading strand. DNA Repair, 129 . p. 103541. ISSN 1568-7864
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Official URL: https://doi.org/10.1016/j.dnarep.2023.103541
Abstract
The generally accepted model assumes that leading strand synthesis is performed by Pol ε, while lagging-strand synthesis is catalyzed by Pol δ. Pol ε has been shown to target the leading strand by interacting with the CMG helicase [Cdc45 Mcm2–7 GINS(Psf1–3, Sld5)]. Proper functioning of the CMG-Pol ε, the helicase-polymerase complex is essential for its progression and the fidelity of DNA replication. Dpb2p, the essential non-catalytic subunit of Pol ε plays a key role in maintaining the correct architecture of the replisome by acting as a link between Pol ε and the CMG complex. Using a temperature-sensitive dpb2–100 mutant previously isolated in our laboratory, and a genetic system which takes advantage of a distinct mutational signature of the Pol δ-L612M variant which allows detection of the involvement of Pol δ in the replication of particular DNA strands we show that in yeast cells with an impaired Dpb2 subunit, the contribution of Pol δ to the replication of the leading strand is significantly increased.
| Item Type: | Article | 
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| Uncontrolled Keywords: | DNA polymerase epsilon Pol ε Dpb2 DNA polymerase delta Pol δ CMG (Cdc45 Mcm2–7 GINS) Replication fork DNA replication fidelity Genome stability | 
| Subjects: | Q Science > Q Science (General) Q Science > QH Natural history > QH301 Biology Q Science > QR Microbiology | 
| ID Code: | 2537 | 
| Deposited By: | dr Michał Dmowski | 
| Deposited On: | 01 Apr 2025 12:32 | 
| Last Modified: | 01 Apr 2025 12:32 | 
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