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Resistance to tomudex (ZD1694): multifactorial in human breast and colon carcinoma cell lines
J C Drake1, C J Allegra, R G Moran
1NCI-NAVY Medical Oncology Branch, National Cancer Institute, Bethesda, MD 20889, USA.
Abstract:
ZD1694 (Tomudex; TDX) is a quinazoline antifolate that, when polyglutamated, is a potent inhibitor of thymidylate synthase (TS), the enzyme that converts dUMP to dTMP. Continuous exposure of MCF-7 breast and NCI H630 colon cells to TDX, with stepwise increases in TDX up to 2.0 microM, resulted in stably resistant cell lines (MCFTDX and H630TDX) that were highly resistant to TDX. Initial studies revealed 34-fold increase in TS protein levels in MCFTDX and a 52-fold increase in TS levels in H630TDX cell lines. Despite continued exposure of these cells to 2.0 microM TDX, TS protein and TS mRNA expression decreased to parental levels in H630TDX cells, whereas in MCFTDX cells TS mRNA expression and TS protein levels remained elevated. Southern blot analysis revealed a 20-fold TS gene amplification in the MCFTDX cell line. TDX uptake was 2-fold higher in resistant MCFTDX cells than in parental MCF-7 cells, whereas in H630TDX cells TDX uptake was 50-fold less than that observed in parental H630 cells. In contrast, no change in the transport of either leucovorin or methotrexate into H630TDX cells was noted when compared with the H630 parental cells. In H630TDX cells, folylpolyglutamate synthetase (FPGS) activity was 48-fold less compared to parent H630 cells; however, FPGS mRNA expression was similar in both lines. H630TDX cells were also highly resistant to ZD9331, a novel quinazoline TS inhibitor that does not require polyglutamation, suggesting that defective transport by the reduced folate carrier was also an important mechanism of resistance in these cells. In MCFTDX and H630TDX resistant cells, several mechanisms of resistance are apparent: one increased TS expression; the others evolved over time from increased TS expression to decreased FPGS levels and decreased TDX transport.
Insights
This study investigates resistance to the antifolate drug ZD1694 (Tomudex; TDX) in cancer cells. Resistance mechanisms include increased thymidylate synthase (TS) and altered drug transport, crucial for understanding antifolate drug efficacy.
Area of Science:
- Biochemistry
- Molecular Biology
- Cancer Research
Background:
- ZD1694 (Tomudex; TDX) is a quinazoline antifolate inhibiting thymidylate synthase (TS).
- Cancer cells can develop resistance to antifolate drugs, impacting treatment efficacy.
Purpose of the Study:
- To investigate the mechanisms of resistance to ZD1694 (TDX) in human breast (MCF-7) and colon (NCI H630) cancer cell lines.
- To characterize the changes in TS expression, drug uptake, and related enzyme activity in TDX-resistant cells.
Main Methods:
- Stepwise exposure of MCF-7 and NCI H630 cells to increasing concentrations of TDX to generate resistant cell lines (MCFTDX and H630TDX).
- Analysis of TS protein and mRNA levels, TS gene amplification (Southern blot), TDX uptake, and folylpolyglutamate synthetase (FPGS) activity and mRNA expression.
Main Results:
- Resistant cell lines showed significant increases in TS protein levels (34-fold in MCFTDX, 52-fold in H630TDX).
- MCFTDX cells exhibited TS gene amplification, while H630TDX cells showed decreased TDX uptake and significantly reduced FPGS activity.
- H630TDX cells also displayed resistance to ZD9331, indicating defective reduced folate carrier transport.
Conclusions:
- Multiple mechanisms contribute to TDX resistance, including increased TS expression, TS gene amplification, decreased FPGS activity, and impaired TDX transport.
- Understanding these resistance mechanisms is vital for optimizing antifolate-based cancer therapies.

