Literature DB >> 2172765

Development of a stable camptothecin-resistant subline of P388 leukemia with reduced topoisomerase I content.

W K Eng1, F L McCabe, K B Tan, M R Mattern, G A Hofmann, R D Woessner, R P Hertzberg, R K Johnson.   

Abstract

A camptothecin-resistant subline of P388 leukemia (P388/CPT) was developed by repeated transplantation of P388 cells in mice treated with therapeutic doses of camptothecin. In mice bearing the resistant tumor, a maximally tolerated dose of camptothecin produced no net reduction in tumor cell burden, in contrast to a 5-log cell kill in the parental P388 (P388/S). The IC50 of camptothecin, as determined by colony formation assays of cultured cells, was 8 times greater for the cloned P388/CPT cell line than for P388/S. P388/CPT cells were not cross-resistant to other antineoplastic agents, including topoisomerase II inhibitors. The type I topoisomerases purified from P388/CPT and P388/S cells were identical with respect to molecular weight, specific activity, in vitro camptothecin sensitivity, and DNA cleavage specificity. Camptothecin induced fewer protein-associated DNA single-strand breaks in the resistant cells than in the wild-type P388 cells. Topoisomerase I mRNA, immunoreactivity, and extractable enzymatic activity were 2-4 times lower for P388/CPT cells than for P388/S cells. As resistance to camptothecin developed, topoisomerase I extractable activity decreased, concomitant with an increase in topoisomerase II extractable activity. Furthermore, the appearance of camptothecin resistance was associated with specific rearrangements of the topoisomerase I gene. These results suggest that development of resistance to inhibitors of topoisomerase I can occur by down-regulation of the target enzyme, thus reducing the production of lethal enzyme-mediated DNA damage. The enhanced topoisomerase II activity in these cells suggests that resistance to camptothecin may be overcome by co-treatment with topoisomerase II inhibitors.

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Year:  1990        PMID: 2172765

Source DB:  PubMed          Journal:  Mol Pharmacol        ISSN: 0026-895X            Impact factor:   4.436


  22 in total

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Review 3.  Topoisomerase I in multiple drug resistance.

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5.  Convection-enhanced delivery of topotecan into a PDGF-driven model of glioblastoma prolongs survival and ablates both tumor-initiating cells and recruited glial progenitors.

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6.  Reduced expression of DNA topoisomerase I in SF295 human glioblastoma cells selected for resistance to homocamptothecin and diflomotecan.

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Review 7.  Topoisomerase II in multiple drug resistance.

Authors:  G A Hofmann; M R Mattern
Journal:  Cytotechnology       Date:  1993       Impact factor: 2.058

8.  Synthesis of a peptide-universal nucleotide antigen: towards next-generation antibodies to detect topoisomerase I-DNA covalent complexes.

Authors:  Angela L Perkins; Kevin L Peterson; Thomas G Beito; Karen S Flatten; Scott H Kaufmann; Daniel A Harki
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9.  Cross-resistance of drug-resistant murine P388 leukemias to taxol in vivo.

Authors:  W R Waud; K S Gilbert; S D Harrison; D P Griswold
Journal:  Cancer Chemother Pharmacol       Date:  1992       Impact factor: 3.333

10.  Topoisomerase I gene mutations at F270 in the large subunit and N184 in the small subunit contribute to the resistance mechanism of the unicellular parasite Leishmania donovani towards 3,3'-diindolylmethane.

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