Accurate DNA Synthesis Across 8-Oxoadenine by Human PrimPol
Точная синтез ДНК через 8-оксоаденин у человеческого PrimPol
2025-07-16
SCID: 54.1/rrzg9cse
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8-oxoadenine (8-oxoA)8-oxoguanine (8-oxoG)Human PrimPolMg2+ to Mn2+ stimulationtranslesion synthesis (TLS)
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Abstract (AI)
PrimPol is a human DNA primase and DNA polymerase involved in DNA damage tolerance in both nuclei and mitochondria. PrimPol restarts stalled replication forks by synthesizing DNA primers de novo and also possesses DNA translesion activity (TLS activity). PrimPol efficiently and relatively accurately bypasses several DNA lesions including 8-oxoguanine, thymine glycol and 5-formyluracil. In this work, we showed that PrimPol possesses efficient and accurate TLS activity across 8-oxoadenine, another common DNA lesion caused by oxidative stress. The accuracy of PrimPol on DNA with 8-oxoA was significantly higher compared to DNA containing 8-oxoG. Replacement of Mg2+ ions with Mn2+ stimulated activity of PrimPol on DNA with 8-oxoA and 8-oxoG as well as undamaged A in a sequence-dependent manner by the lesion skipping (or template scrunching) mechanism. Altogether, our data support the idea that PrimPol possesses efficient TLS activity across a wide range of DNA lesions caused by oxidative stress.
Key Findings
1
Human PrimPol efficiently and accurately performs translesion DNA synthesis (TLS) across 8-oxoadenine (8-oxoA).
2
Overall, PrimPol exhibits efficient TLS across a broad range of oxidative DNA lesions, supporting its role in DNA damage tolerance.
3
PrimPol's accuracy when bypassing 8-oxoA is significantly higher than its accuracy when bypassing 8-oxoguanine (8-oxoG).
4
Substituting Mg2+ with Mn2+ stimulates PrimPol activity on templates containing 8-oxoA, 8-oxoG, and undamaged A in a sequence-dependent manner.
5
The Mn2+-dependent stimulation operates via a lesion skipping (template scrunching) mechanism.
Research Object
Human PrimPol acting on DNA templates containing 8-oxoadenine (8-oxoA) lesions
Research Subject
The efficiency and accuracy of PrimPol's translesion DNA synthesis (TLS) across 8-oxoadenine, including modulation by divalent cations (Mg2+ vs Mn2+) and sequence-dependent lesion-skipping/template-scrunching behavior
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2025-07-16
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