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PMID: 9029006 Published · ppublish English Journal Article

The sensitivity of Fanconi anaemia group C cells to apoptosis induced by mitomycin C is due to oxygen radical generation, not DNA crosslinking.

British journal of haematology ·Vol. 96 ·No. 2 ·1997-02-00 ·Pages 240-7

Clarke AA, Philpott NJ, Gordon-Smith EC, Rutherford TR

Abstract

Fanconi's anaemia (FA) is characterized by increased spontaneous and induced chromosome fragility. This has been widely regarded to be due to a defect in DNA crosslink repair, because of the sensitivity of cells to known DNA crosslinking agents such as mitomycin C (MMC) and diepoxybutane (DEB). Although Fanconi cells are also sensitive to molecular oxygen, and may be protected by antioxidants, this has generally been considered to be a secondary phenomenon. However, it has recently been demonstrated that the FAC protein, coded for by the Fanconi anaemia gene for complementation group C, is strictly cytoplasmic and does not enter the nucleus even after DNA damage, which seems inconsistent with a role in DNA repair. We have studied the effects of MMC and oxygen on apoptotic cell death in FA group C (FA-C) and normal lymphoblastoid cell lines. Hyperoxia alone failed to induce apoptosis in either FA-C or normal cells. At ambient oxygen, MMC is known to generate oxygen free radicals, whereas decreased oxygen tension facilitates the metabolic activation of MMC for DNA crosslinking. We therefore studied the effects of MMC at 20% and 5% oxygen to favour oxygen radical generation or DNA crosslinking respectively. FA-C cells showed increased sensitivity compared to normal cells for the induction of apoptosis by MMC at 20% oxygen. When cells were treated with MMC at 5% oxygen we found no increased sensitivity of Fanconi cells to MMC when compared to normal cells. These results imply a role for oxygen free radicals, but not for DNA crosslinking, in the sensitivity of FA cells to MMC.

MeSH Terms
Apoptosis/drug effects Cell Line DNA/chemistry Fanconi Anemia/pathology Flow Cytometry Free Radicals/metabolism Humans Lymphocytes/metabolism Mitomycin/pharmacology Oxygen/administration & dosage,metabolism
Chemicals
Free Radicals Mitomycin DNA Oxygen
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Clarke A A
Department of Cellular and Molecular Sciences, St George's Hospital Medical School, London.
Philpott N J
Gordon-Smith E C
Rutherford T R
Article Info
Journal
British journal of haematology
Abbr.
Br J Haematol
ISSN
0007-1048
Published
1997-02-00
Pages
240-7
Language
English
Region
England
NLM ID
0372544
Subset
IM
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