Literature DB >> 18243687

Role of homologous recombination in trabectedin-induced DNA damage.

M Tavecchio1, M Simone, E Erba, I Chiolo, G Liberi, M Foiani, M D'Incalci, G Damia.   

Abstract

Trabectedin (ET-743, Yondelis) is a natural marine compound with antitumour activity currently undergoing phase II/III clinical trials. The mechanism of the drug's action is still to be defined, even though it has been clearly demonstrated the key role of Nucleotide Excision Repair (NER). To get further insights into the drug's mode of action, we studied the involvement of the DNA-double strand break repair (DNA-DSB) pathways: homologous and non-homologous recombination, both in budding yeasts and in mammalian cells and the possible cross-talk between NER and these repair pathways. Budding yeasts and mammalian cells deficient in the non-homologous end-joining pathway were moderately sensitive to trabectedin, while systems deficient in the homologous recombination pathway were extremely sensitive to the drug, with a 100-fold decrease in the IC50, suggesting that trabectedin-induced lesions are repaired by this pathway. The induction of Rad51 foci and the appearance of gamma-H2AX were chosen as putative markers for DNA-DSBs and were studied at different time points after trabectedin treatment in NER proficient and deficient systems. Both were clearly detected only in the presence of an active NER, suggesting that the DSBs are not directly caused by the drug, but are formed during the processing/repair of the drug- induced lesions.

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Year:  2008        PMID: 18243687     DOI: 10.1016/j.ejca.2008.01.003

Source DB:  PubMed          Journal:  Eur J Cancer        ISSN: 0959-8049            Impact factor:   9.162


  28 in total

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8.  Trabectedin as single agent in relapsed advanced ovarian cancer: results from a retrospective pooled analysis of three phase II trials.

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Review 9.  Trabectedin: a review of its use in soft tissue sarcoma and ovarian cancer.

Authors:  Natalie J Carter; Susan J Keam
Journal:  Drugs       Date:  2010-02-12       Impact factor: 9.546

10.  Liposarcoma: molecular genetics and therapeutics.

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