Literature DB >> 2966637

Recognition and repair of the CC-1065-(N3-adenine)-DNA adduct by the UVRABC nucleases.

M S Tang1, C S Lee, R Doisy, L Ross, D R Needham-VanDevanter, L H Hurley.   

Abstract

The recognition and repair of the helix-stabilizing and relatively nondistortive CC-1065-(N3-adenine)-DNA adduct by UVRABC nuclease has been investigated both in vivo with phi X174 RFI DNA by a transfection assay and in vitro by a site-directed adduct in a 117 base pair fragment from M13mp1. CC-1065 is a potent antitumor antibiotic produced by Streptomyces zelensis which binds within the minor groove of DNA through N3 of adenine. In contrast to the helix-destabilizing and distortive modifications of DNA caused by ultraviolet light or N-acetoxy-2-(acetylamino)fluorene, CC-1065 increases the melting point of DNA and decreases the S1 nuclease activity. Using a viral DNA-Escherichia coli transfection system, we have found that the uvrA, uvrB, and uvrC genes, which code for the major excision repair proteins for UV- and NAAAF-induced DNA damage, are also involved in the repair of CC-1065-DNA adducts. In contrast, the uvrD gene product, which has been found to be involved in the repair of UV damage, has no effect in repairing CC-1065-DNA adducts. Purified UVRA, UVRB, and UVRC proteins must work in concert to incise the drug-modified phi X174 RFI DNA. Using a site-directed and multiple CC-1065 modified (MspI-BstNI) 117 base pair fragment from M13mp1, we have found that UVRABC nuclease incises at the eighth phosphodiester bond on the 5' side of the CC-1065-DNA adduct on the drug-modified strand.(ABSTRACT TRUNCATED AT 250 WORDS)

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Year:  1988        PMID: 2966637     DOI: 10.1021/bi00403a009

Source DB:  PubMed          Journal:  Biochemistry        ISSN: 0006-2960            Impact factor:   3.162


  5 in total

Review 1.  Nucleotide excision repair in Escherichia coli.

Authors:  B Van Houten
Journal:  Microbiol Rev       Date:  1990-03

2.  Repair of mitomycin C mono- and interstrand cross-linked DNA adducts by UvrABC: a new model.

Authors:  Mao-wen Weng; Yi Zheng; Vijay P Jasti; Elise Champeil; Maria Tomasz; Yinsheng Wang; Ashis K Basu; Moon-shong Tang
Journal:  Nucleic Acids Res       Date:  2010-07-06       Impact factor: 16.971

3.  Interaction of novel bis(platinum) complexes with DNA.

Authors:  J D Roberts; B Van Houten; Y Qu; N P Farrell
Journal:  Nucleic Acids Res       Date:  1989-12-11       Impact factor: 16.971

4.  In vitro enhancement of antitumor activity of a water-soluble duocarmycin derivative, KW-2189, by caffeine-mediated DNA-repair inhibition in human lung cancer cells.

Authors:  H Ogasawara; K Nishio; T Ishida; H Arioka; K Fukuoka; N Saijo
Journal:  Jpn J Cancer Res       Date:  1997-11

5.  Anticellular and antitumor activity of duocarmycins, novel antitumor antibiotics.

Authors:  K Gomi; E Kobayashi; K Miyoshi; T Ashizawa; A Okamoto; T Ogawa; S Katsumata; A Mihara; M Okabe; T Hirata
Journal:  Jpn J Cancer Res       Date:  1992-01
  5 in total

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