![PubReading [274] - The eukaryotic replisome tolerates leading-strand base damage by replicase switching - T. Guilliam & J. Yeeles](https://pbcdn.aoneroom.com/image/2025/10/01/7e6046e0a35206382805a998ee97f6e9.jpg)
PubReading [274] - The eukaryotic replisome tolerates leading-strand base damage by replicase switching - T. Guilliam & J. Yeeles
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<p>The high-fidelity replicative<strong> DNA polymerases</strong>, Pol e and Pol d, are generally thought to be poorly equipped to replicate damaged DNA. Direct and complete replication of a damaged template therefore typically requires the activity of <strong>low-fidelity translesion synthesis</strong> (TLS) polymerases. Here we show that a yeast replisome, reconstituted with purified proteins, is inherently tolerant of the common oxidative lesion <strong>thymine glycol</strong> (Tg). Surprisingly, leading-strand Tg was bypassed efficiently in the presence and absence of the TLS machinery. Our data reveal that following helicase–polymerase uncoupling a switch from Pol e, the canonical leading-strand replicase, to the lagging-strand replicase Pol d, facilitates rapid, efficient and error-free lesion bypass at physiological nucleotide levels. This replicase switch mechanism also promotes bypass of the unrelated oxidative lesion, 8-oxoguanine. We propose that <strong>replicase switching</strong> may promote continued leading-strand synthesis whenever the replisome encounters leading-strand damage that is bypassed more efficiently by Pol d than by Pol e.</p><p><em>DOI: </em><a href="https://doi.org/10.15252/embj.2020107037"><em>10.15252/embj.2020107037 - 20121</em></a></p>
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PubReading [274] - The eukaryotic replisome tolerates leading-strand base damage by replicase switching - T. Guilliam & J. Yeeles
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