Selective blockage of the 3'->5' exonuclease activity of WRN protein by certain oxidative modifications and bulky lesions in DNA
Open Access
- 15 July 2000
- journal article
- research article
- Published by Oxford University Press (OUP) in Nucleic Acids Research
- Vol. 28 (14) , 2762-2770
- https://doi.org/10.1093/nar/28.14.2762
Abstract
Individuals with mutations in the WRN gene suffer from Werner syndrome, a disease with early onset of many characteristics of normal aging. The WRN protein (WRNp) functions in DNA metabolism, as the purified polypeptide has both 3′→5′ helicase and 3′→5′ exonuclease activities. In this study, we have further characterized WRNp exonuclease activity by examining its ability to degrade double-stranded DNA substrates containing abnormal and damaged nucleotides. In addition, we directly compared the 3′→5′ WRNp exonuclease activity with that of exonuclease III and the Klenow fragment of DNA polymerase I. Our results indicate that the presence of certain abnormal bases (such as uracil and hypoxanthine) does not inhibit the exonuclease activity of WRNp, exonuclease III or Klenow, whereas other DNA modifications, including apurinic sites, 8-oxoguanine, 8-oxoadenine and cholesterol adducts, inhibit or block WRNp. The ability of damaged nucleotides to inhibit exonucleolytic digestion differs significantly between WRNp, exonuclease III and Klenow, indicating that each exonuclease has a distinct mechanism of action. In addition, normal and modified DNA substrates are degraded similarly by full-length WRNp and an N-terminal fragment of WRNp, indicating that the specificity for this activity lies mostly within this region. The biochemical and physiological significance of these results is discussed.Keywords
This publication has 37 references indexed in Scilit:
- Enzymatic and DNA binding properties of purified WRN protein: high affinity binding to single-stranded DNA but not to DNA damage induced by 4NQONucleic Acids Research, 1999
- Cell fusion corrects the 4-nitroquinoline 1-oxide sensitivity of Werner syndrome fibroblast cell linesHuman Genetics, 1999
- Functional and Physical Interaction between WRN Helicase and Human Replication Protein AJournal of Biological Chemistry, 1999
- Mutations in RECQL4 cause a subset of cases of Rothmund-Thomson syndromeNature Genetics, 1999
- Defending genome integrity during DNA replication: a proposed role for RecQ family helicasesBioEssays, 1999
- Werner syndrome helicase contains a 5'->3' exonuclease activity that digests DNA and RNA strands in DNA/DNA and RNA/DNA duplexes dependent on unwindingNucleic Acids Research, 1999
- Werner Syndrome ProteinJournal of Biological Chemistry, 1998
- Werner Syndrome ProteinJournal of Biological Chemistry, 1998
- Cloning of Two New Human Helicase Genes of the RecQ Family: Biological Significance of Multiple Species in Higher EukaryotesGenomics, 1998
- The premature ageing syndrome protein, WRN, is a 3′→5′ exonucleaseNature Genetics, 1998