The abundant DNA adduct N 7 -methyl deoxyguanosine contributes to miscoding during replication by human DNA polymerase η
Aside from abasic sites and ribonucleotides, the DNA adduct -methyl deoxyguanosine ( -CH dG) is one of the most abundant lesions in mammalian DNA. Because -CH dG is unstable, leading to deglycosylation and ring-opening, its miscoding potential is not well-understood. Here, we employed a 2'-fluo...
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Veröffentlicht in: | The Journal of biological chemistry 2019-06, Vol.294 (26), p.10253 |
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Sprache: | eng |
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Zusammenfassung: | Aside from abasic sites and ribonucleotides, the DNA adduct
-methyl deoxyguanosine (
-CH
dG) is one of the most abundant lesions in mammalian DNA. Because
-CH
dG is unstable, leading to deglycosylation and ring-opening, its miscoding potential is not well-understood. Here, we employed a 2'-fluoro isostere approach to synthesize an oligonucleotide containing an analog of this lesion (
-CH
2'-F dG) and examined its miscoding potential with four Y-family translesion synthesis DNA polymerases (pols): human pol (hpol) η, hpol κ, and hpol ι and Dpo4 from the archaeal thermophile
We found that hpol η and Dpo4 can bypass the
-CH
2'-F dG adduct, albeit with some stalling, but hpol κ is strongly blocked at this lesion site, whereas hpol ι showed no distinction with the lesion and the control templates. hpol η yielded the highest level of misincorporation opposite the adduct by inserting dATP or dTTP. Moreover, hpol η did not extend well past an
-CH
2'-F dG:dT mispair. MS-based sequence analysis confirmed that hpol η catalyzes mainly error-free incorporation of dC, with misincorporation of dA and dG in 5-10% of products. We conclude that
-CH
2'-F dG and, by inference,
-CH
dG have miscoding and mutagenic potential. The level of misincorporation arising from this abundant adduct can be considered as potentially mutagenic as a highly miscoding but rare lesion. |
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ISSN: | 1083-351X |
DOI: | 10.1074/jbc.RA119.008986 |