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DNA Polymerase β and Flap Endonuclease 1 Enzymatic Specificities Sustain DNA Synthesis for Long Patch Base Excision Repair
- Source :
- Journal of Biological Chemistry. 280:3665-3674
- Publication Year :
- 2005
- Publisher :
- Elsevier BV, 2005.
-
Abstract
- DNA polymerase beta (pol beta) and flap endonuclease 1 (FEN1) are key players in pol beta-mediated long-patch base excision repair (LP-BER). It was proposed that this type of LP-BER is accomplished through FEN1 removal of a 2- to 11-nucleotide flap created by pol beta strand displacement DNA synthesis. To understand how these enzymes might cooperate during LP-BER, we characterized purified human pol beta DNA synthesis by utilizing various BER intermediates, including single-nucleotide-gapped DNA, nicked DNA, and nicked DNA with various lengths of flaps all with a 5'-terminal tetrahydrofuran (THF) residue. We observed that nicked DNA and nicked-THF flap DNA were poor substrates for pol beta-mediated DNA synthesis; yet, DNA synthesis was strongly stimulated by purified human FEN1. FEN1 did not improve pol beta substrate binding. FEN1 cleavage activity was required for the stimulation, suggesting that FEN1 removed a barrier to pol beta DNA synthesis. In addition, FEN1 cleavage on both nicked and nicked-THF flap DNA resulted in a one-nucleotide gapped DNA molecule that was an ideal substrate for pol beta. This study demonstrates that pol beta cooperates with FEN1 to remove DNA damage via a "Hit and Run" mechanism, involving alternating short gap production by FEN1 and gap filling by pol beta, rather than through coordinated formation and removal of a strand-displaced flap.
- Subjects :
- DNA clamp
DNA Repair
biology
Flap Endonucleases
DNA polymerase
DNA polymerase II
DNA replication
Electrophoretic Mobility Shift Assay
DNA
Cell Biology
Processivity
Base excision repair
Biochemistry
DNA polymerase delta
Molecular biology
Substrate Specificity
biology.protein
Humans
Molecular Biology
DNA polymerase mu
DNA Polymerase beta
Subjects
Details
- ISSN :
- 00219258
- Volume :
- 280
- Database :
- OpenAIRE
- Journal :
- Journal of Biological Chemistry
- Accession number :
- edsair.doi.dedup.....d0c53c0aa2ed3d0f08e52eb0bf24d56d
- Full Text :
- https://doi.org/10.1074/jbc.m412922200