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PMID: 9080773 Published · ppublish English Journal Article Research Support, U.S. Gov't, P.H.S. Review

The FEN-1 family of structure-specific nucleases in eukaryotic DNA replication, recombination and repair.

Lieber MR

Abstract

Unlike the most well-characterized prokaryotic polymerase, E. coli DNA pol l, none of the eukaryotic polymerases have their own 5' to 3' exonuclease domain for nick translation and Okazaki fragment processing. In eukaryotes, FEN-1 is an endo- and exonuclease that carries out this function independently of the polymerase molecules. Only seven nucleases have been cloned from multicellular eukaryotic cells. Among these, FEN-1 is intriguing because it has complex structural preferences; specifically, it cleaves at branched DNA structures. The cloning of FEN-1 permitted establishment of the first eukaryotic nuclease family, predicting that S. cerevisiae RAD2 (S. pombe Rad13) and its mammalian homolog, XPG, would have similar structural specificity. The FEN-1 nuclease family includes several similar enzymes encoded by bacteriophages. The crystal structures of two enzymes in the FEN-1 nuclease family have been solved and they provide a structural basis for the interesting steric requirements of FEN-1 substrates. Because of their unique structural specificities, FEN-1 and its family members have important roles in DNA replication, repair and, potentially, recombination. Recently, FEN-1 was found to specifically associate with PCNA, explaining some aspects of FEN-1 function during DNA replication and potentially in DNA repair.

MeSH Terms
DNA Repair/physiology DNA Replication/physiology Exodeoxyribonuclease V Exodeoxyribonucleases Models, Molecular Recombination, Genetic/physiology
Chemicals
Exodeoxyribonucleases Exodeoxyribonuclease V
Authors & Affiliations
1 authors, click to expand affiliations / ORCID
Lieber M R
Dept of Pathology, Washington University School of Medicine, St Louis, MO 63110, USA.
Article Info
Journal
BioEssays : news and reviews in molecular, cellular and developmental biology
Abbr.
Bioessays
ISSN
0265-9247
Published
1997-03-00
Pages
233-40
Language
English
Region
United States
NLM ID
8510851
Subset
IM
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