1. Academic Validation
  2. Human DNA polymerase N (POLN) is a low fidelity enzyme capable of error-free bypass of 5S-thymine glycol

Human DNA polymerase N (POLN) is a low fidelity enzyme capable of error-free bypass of 5S-thymine glycol

  • J Biol Chem. 2006 Aug 18;281(33):23445-55. doi: 10.1074/jbc.M604317200.
Kei-ichi Takata 1 Tatsuhiko Shimizu Shigenori Iwai Richard D Wood
Affiliations

Affiliation

  • 1 Department of Pharmacology, Hillman Cancer Center, University of Pittsburgh Medical School, Pittsburgh, Pennsylvania 15213-1863, USA.
Abstract

Human DNA Polymerase N (POLN or pol nu) is the most recently discovered nuclear DNA Polymerase in the human genome. It is an A-family DNA Polymerase related to Escherichia coli pol I, human POLQ, and Drosophila Mus308. We report the first purification of the recombinant Enzyme and examination of its biochemical properties, as a step toward understanding the functions of POLN. Unusual for an A-family DNA Polymerase, POLN is a low fidelity Enzyme incorporating T opposite template G with a frequency of 0.45 and G opposite template T with a frequency of 0.021. The frequency of misincorporation of T opposite template G is higher than any other known DNA Polymerase. POLN has a processivity of DNA synthesis (1-100 nucleotides) similar to the exonuclease-deficient Klenow fragment of E. coli pol I, is inhibited by dideoxynucleotides, and resistant to aphidicolin. The strand displacement activity of POLN was higher than exonuclease-deficient Klenow fragment. Furthermore, POLN can perform translesion synthesis past thymine glycol, a common endogenous and radiation-induced product of Reactive Oxygen Species damage to DNA. Thymine glycol blocks DNA synthesis by most DNA polymerases, but POLN was particularly adept at efficient and accurate translesion synthesis past a 5S-thymine glycol.

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