Published March 1990 | Version v1
Journal article

Crhomatin-associated DNA endonucleases from xeroderma pigmentosum cells are defective in interaction with damaged nucleosomal DNA

  • 1. The Graduate school of Biomedical Sciences, Newark (USA)
  • 2. New Jersey Medical School, Newark (USA)
  • 3. University of Medicine and Dentistry of New Jerswy, Newark (USA). Department of Pahtology

Description

The influence of nucleosome structure on the activity of 2 chromatin-associated DNA endonucleases, pIs 4.6 and 7.6, from normal human and xeroderna pigmentosum, complementation group A (XPA), lymphoblastoid cells was examined on DNA containing either psoralen monoadducts or cross-links. As substrate a reconstituted nucleosomal system was utilized consisting of a plasmid DNA and either core or total histones from normal or XPA cells. Both non-nucleosomal and nucleosomal DNA were treated with 8-methoxypsoralen (8-MOP) plus long-wavelength ultraviolet radiation (UVA), which produces monoadducts and DNA interstrand cross-links, and angelicin plus UVA, which produces monoadducts. Both normal endonucleases were over 2-fold more active on both types of psoralen-plus-UVA-damaged core nucleosomal DNA than on damaged non-nucleosomal DNA. Addition of histone H1 to the system reduced but did not abolish this increase. The results indicate that interaction of these endonucleases with chromatin is of critical importance and that it is at this level that a defect exists in XPA endonucleases. (author). 51 refs.; 5 figs.; 1 tab

Additional details

Publishing Information

Journal Title
Mutation Research, DNA Repair
Journal Volume
235
Journal Issue
2
Series
Mutat. Res., DNA Repair.
Journal Page Range
65-80
ISSN
0921-8777
CODEN
MUREA