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A single amino acid change (E85K) in human PCNA that leads, relative to wild type, to enhanced DNA synthesis by DNA polymerase δ past nucleotide base lesions (TLS) as well as on unmodified templates

  • Paul A. Fisher
  • , Demetrius L. Moutsiakis
  • , Maeve McConnell
  • , Holly Miller
  • , Dmitry Ju Mozzherin
  • Stony Brook University

Research output: Contribution to journalArticlepeer-review

4 Scopus citations

Abstract

Human proliferating cell nuclear antigen (hPCNA) containing a single amino acid substitution at position 85, that of lysine for glutamate (E85K), was compared to wild-type (wt) hPCNA for its ability to promote DNA synthesis by purified DNA polymerase δ (pol δ) both on unmodified templates and past chemically defined template base lesions (translesion synthesis; TLS). Significant enhancement (up to 4-5-fold or greater) was seen but depended both on the exact PCNA/pol δ ratio tested and on the specific nature of the template (e.g., unmodified versus lesion-containing; chemical nature of the template base lesion). These results suggest that human PCNA, either mutated to contain lysine (K) at position 85 or bearing similar primary mutations, would promote more secondary mutagenesis in cells and/or tissues where PCNA is normally expressed at low levels relative to pol δ. Over an entire lifetime, such secondary mutagenesis could be biomedically significant.

Original languageEnglish
Pages (from-to)15915-15921
Number of pages7
JournalBiochemistry
Volume43
Issue number50
DOIs
StatePublished - Dec 21 2004

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