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DNA Polymerase ν Rapidly Bypasses O6‑Methyl-dG but Not O6‑[4-(3-Pyridyl)-4-oxobutyl-dG and O2‑Alkyl-dTs

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Figshare2016-11-15 更新2026-04-29 收录
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https://figshare.com/articles/dataset/DNA_Polymerase_Rapidly_Bypasses_i_O_i_sup_6_sup_Methyl-dG_but_Not_i_O_i_sup_6_sup_4-_3-Pyridyl_-4-oxobutyl-dG_and_i_O_i_sup_2_sup_Alkyl-dTs/4057671
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4-(Methylnitrosamino)-1-(3-pyridyl)-1-butanone (NNK) is a potent tobacco carcinogen that forms mutagenic DNA adducts including O6-methyl-2′-deoxyguanosine (O6-Me-dG), O6-[4-(3-pyridyl)-4-oxobut-1-yl]-dG (O6-POB-dG), O2-methylthymidine (O2-Me-dT), and O2-POB-dT. We evaluated the ability of human DNA polymerase ν to bypass this damage to evaluate the structural constraints on substrates for pol ν and to evaluate if there is kinetic evidence suggesting the in vivo activity of pol ν on tobacco-induced DNA damage. Presteady-state kinetic analysis has indicated that O6-Me-dG is a good substrate for pol ν, while O6-POB-dG and the O2-alkyl-dT adducts are poor substrates for pol ν. The reactivity with O6-Me-dG is high with a preference for dCTP > dGTP > dATP > dTTP. The catalytic activity of pol ν toward O6-Me-dG is high and can potentially be involved in its bypass in vivo. In contrast, pol ν is unlikely to bypass O6-POB-dG or the O2-alkyl-dTs in vivo.
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2016-11-15
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