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Genetic characterization of the multidrug-resistant phenotype of VM-26-resistant human leukemic cells

J S Wolverton1, M K Danks, C A Schmidt

  • 1Department of Biochemical and Clinical Pharmacology, St. Jude Children's Research Hospital, Memphis, Tennessee 38101.

Cancer Research
|May 1, 1989
PubMed

Insights

This study investigates a novel form of multidrug resistance (MDR) in human T-cell leukemia. Hybridization experiments successfully restored drug sensitivity, suggesting genetic factors influence this resistance.

Area of Science:

  • Oncology
  • Molecular Biology
  • Genetics

Background:

  • CEM/VM-1 cells exhibit resistance to topoisomerase II inhibitors, distinct from P-glycoprotein-mediated multidrug resistance (MDR).
  • This resistance is characterized by decreased topoisomerase II activity and not by impaired drug accumulation or MDR1 gene overexpression.
  • The mechanism suggests an alteration in topoisomerase II or its modulator, termed altered topoisomerase II-mediated multidrug resistance (at-MDR).

Purpose of the Study:

  • To investigate the somatic cell genetics of at-MDR using hybridization techniques.
  • To determine if drug sensitivity can be reconstituted in resistant cells through genetic manipulation.
  • To analyze the role of genetic factors in conferring resistance to topoisomerase II-targeting drugs.

Main Methods:

  • Production of hybrid cell lines via polyethylene glycol-mediated fusion between CEM/VM-1 (VM-26 resistant) and CEM.AG1.OU1.5 (VM-26 sensitive) cells.
  • Analysis of hybrid cell lines for DNA content using flow cytometry.
  • Assessment of VM-26 sensitivity using a 72-hour growth inhibition assay and measurement of drug-stimulated DNA cleavage (cleavable complex formation).

Main Results:

  • Hybrid cell lines successfully reconstituted VM-26 sensitivity, with IC50 values comparable to sensitive controls.
  • The IC50 for VM-26 in hybrid lines ranged from 4.7 to 7.4 x 10(-8) M, significantly lower than in CEM/VM-1 cells (360-750 x 10(-8) M).
  • Drug-stimulated DNA cleavage activity was observed in hybrid cell nuclear extracts, indicating reconstitution of topoisomerase II function.

Conclusions:

  • Somatic cell hybridization can restore drug sensitivity in cells with at-MDR, indicating a genetic basis for this resistance.
  • The findings support the hypothesis that alterations in topoisomerase II or its modulators are responsible for at-MDR.
  • This study provides genetic evidence for a distinct mechanism of multidrug resistance involving topoisomerase II.

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