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Human DNA Polymerase κ Bypasses and Extends beyond Thymine Glycols during Translesion Synthesisin Vitro, Preferentially Incorporating Correct Nucleotides

Paula L. Fischhaber, Valerie L. Gerlach, William J. Feaver, Zafer Hatahet, Susan S. Wallace, Errol C. Friedberg
2002 Journal of Biological Chemistry  
Human polymerase (pol), the product of the human POLK (DINB1) gene, is a member of the Y superfamily of DNA polymerases that support replicative bypass of chemically modified DNA bases (Ohmori). Pol is shown here to bypass 5,6-dihydro-5,6-dihydroxythymine (thymine glycol) generated in two different DNA substrate preparations. Pol inserts the correct base adenine opposite thymine glycol in preference to the other three bases. Additionally, the enzyme correctly extends beyond the site of the
more » ... he site of the thymine glycol lesion when presented with adenine opposite thymine glycol at the primer terminus. However, steady state kinetic analysis of nucleotides incorporated opposite thymine glycol demonstrates different misincorporation rates for guanine with each of the two DNA substrates. The two substrates differ only in the relative proportions of thymine glycol stereoisomers, suggesting that pol distinguishes among stereoisomers and exhibits reduced discrimination between purines when incorporating a base opposite a 5R thymine glycol stereoisomer. When extending beyond the site of the lesion, the misincorporation rate of pol for each of the three incorrect nucleotides (adenine, guanine, and thymine) is dramatically increased. Our findings suggest a role for pol in both nonmutagenic and mutagenic bypass of oxidative damage.
doi:10.1074/jbc.m206027200 pmid:12145297 fatcat:vbohhljfwja4rdogh2ln7csmie