Error-free and error-prone lesion bypass by human DNA polymerase kappa in vitro
- 1 November 2000
- journal article
- Published by Oxford University Press (OUP) in Nucleic Acids Research
- Vol. 28 (21) , 4138-4146
- https://doi.org/10.1093/nar/28.21.4138
Abstract
Error-free lesion bypass and error-prone lesion bypass are important cellular responses to DNA damage during replication, both of which require a DNA polymerase (Pol). To identify lesion bypass DNA polymerases, we have purified human Polkappa encoded by the DINB1 gene and examined its response to damaged DNA templates. Here, we show that human Polkappa is a novel lesion bypass polymerase in vitro. Purified human Polkappa efficiently bypassed a template 8-oxoguanine, incorporating mainly A and less frequently C opposite the lesion. Human Polkappa most frequently incorporated A opposite a template abasic site. Efficient further extension required T as the next template base, and was mediated mainly by a one-nucleotide deletion mechanism. Human Polkappa was able to bypass an acetylaminofluorene-modified G in DNA, incorporating either C or T, and less efficiently A opposite the lesion. Furthermore, human Polkappa effectively bypassed a template (-)-trans-anti-benzo[a]pyrene-N:(2)-dG lesion in an error-free manner by incorporating a C opposite the bulky adduct. In contrast, human Polkappa was unable to bypass a template TT dimer or a TT (6-4) photoproduct, two of the major UV lesions. These results suggest that Polkappa plays an important role in both error-free and error-prone lesion bypass in humans.Keywords
This publication has 51 references indexed in Scilit:
- The human REV1 gene codes for a DNA template-dependent dCMP transferaseNucleic Acids Research, 1999
- Mutation enhancement by DINB1, a mammalian homologue of the Escherichia coli mutagenesis protein DinBGenes to Cells, 1999
- Human and mouse homologs of Escherichia coli DinB (DNA polymerase IV), members of the UmuC/DinB superfamilyProceedings of the National Academy of Sciences, 1999
- UmuD′ 2 C is an error-prone DNA polymerase, Escherichia coli pol VProceedings of the National Academy of Sciences, 1999
- DNA Ligation during Excision Repair in Yeast Cell-Free Extracts Is Specifically Catalyzed by the CDC9 Gene ProductBiochemistry, 1999
- Mutagenic Specificity of (Acetylamino)fluorene-Derived DNA Adducts in Mammalian CellsBiochemistry, 1998
- N-2-aminofluorene andN-2 acetylaminofluorene Adducts: The Local Sequence Context of an Adduct and its Chemical Structure Determine its Replication PropertiesJournal of Molecular Biology, 1995
- Coding Properties of a Unique Apurinic/Apyrimidinic Site Replicated in Mammalian CellsJournal of Molecular Biology, 1994
- Mechanism of mutation on DNA templates containing synthetic abasic sites: study with a double strand vectorNucleic Acids Research, 1994
- REV3, a Saccharomyces cerevisiae gene whose function is required for induced mutagenesis, is predicted to encode a nonessential DNA polymeraseJournal of Bacteriology, 1989