Search Results - "Liberti, Sascha E"
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Instability throughout the Saccharomyces cerevisiae genome resulting from Pms1 endonuclease deficiency
Published in Nucleic acids research (09-09-2024)“…Abstract The endonuclease activity of Pms1 directs mismatch repair by generating a nick in the newly replicated DNA strand. Inactivating Pms2, the human…”
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Stalled replication forks generate a distinct mutational signature in yeast
Published in Proceedings of the National Academy of Sciences - PNAS (05-09-2017)“…Proliferating cells acquire genome alterations during the act of DNA replication. This leads to mutation accumulation and somatic cell mosaicism in…”
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Esc2 promotes telomere stability in response to DNA replication stress
Published in Nucleic acids research (21-05-2019)“…Abstract Telomeric regions of the genome are inherently difficult-to-replicate due to their propensity to generate DNA secondary structures and form…”
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Quantifying the contributions of base selectivity, proofreading and mismatch repair to nuclear DNA replication in Saccharomyces cerevisiae
Published in DNA repair (01-07-2015)“…•The base selectivity of the major replicases in vivo is higher than measured in vitro.•A variable balance between proofreading and MMR underlies replication…”
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Human DNA polymerase delta double-mutant D316A;E318A interferes with DNA mismatch repair in vitro
Published in Nucleic acids research (19-09-2017)“…DNA mismatch repair (MMR) is a highly-conserved DNA repair mechanism, whose primary role is to remove DNA replication errors preventing them from manifesting…”
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Exonuclease 1 preferentially repairs mismatches generated by DNA polymerase α
Published in DNA repair (01-02-2013)“…► Exo1 preferentially excises lagging strand replication errors during MMR. ► Exo1 more efficiently repairs Pol α replication errors compared to Pol δ errors…”
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Bi-directional routing of DNA mismatch repair protein human exonuclease 1 to replication foci and DNA double strand breaks
Published in DNA repair (02-01-2011)“…Human exonuclease 1 (hEXO1) is implicated in DNA metabolism, including replication, recombination and repair, substantiated by its interactions with PCNA, DNA…”
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