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Pre-clinical Evaluation of Tyrosine Kinase Inhibitors for Treatment of Acute Leukemia
Published on: September 18, 2013
Glutathione, cell proliferation, and 1,3-bis-(2-chloroethyl)-1-nitrosourea in K562 leukemia
H Frischer1, E J Kennedy, R Chigurupati
1Department of Medicine (Hematology), Rush-Presbyterian-St-Luke's Medical Center, Rush University, Chicago, Illinois 60612.
Abstract:
We have pursued our findings of glutathione reductase (GSSG-R) deficiency and disturbed glutathione in cancer patients treated with 1,3-bis-(2-chloroethyl)-1-nitrosourea (BCNU), by investigating how thiol metabolism, cell proliferation, and the nitrosourea interact in human K562 leukemia. Fasting cells arrested in G greatly increased their reduced glutathione (GSH) in response to growth factors. The rise in thiol began after several hours, peaked before DNA synthesis, and resulted from increased production. BCNU inactivated GSSG-R rapidly, and later retarded, doubled, and greatly prolonged GSH formation before stopping DNA synthesis. Pretreatment unlike post treatment with buthionine-S-R-sulfoximine (BSO) diminished BCNU's ability to block GSSG-R. Enzyme inhibition decreased with falling cellular GSH. In the leukemia system as in vivo, sequential BCNU-induced thiol alterations heralded delayed antiproliferative effects. Drug timing markedly affected both thiol and DNA syntheses. By destroying GSSG-R and delaying the upregulation of thiol synthesis while escalating GSH utilization and requirements, the nitrosourea created a striking and previously unrecognized window of vulnerability for GSH-dependent processes. During this period, altered GSH metabolism could contribute indirectly to BCNU's pleiotropic effects by interfering with DNA alkylation repair, glucose decarboxylation, deoxyribose formation, and possibly by influencing other aspects of proliferation. Acquired GSSG-R deficiency was also an early and sensitive marker for prodrug breakdown and activation.
Insights
Glutathione reductase (GSSG-R) deficiency and altered glutathione (GSH) metabolism in leukemia cells treated with BCNU create a vulnerability window, impacting cancer cell proliferation and drug effectiveness.
Area of Science:
- Biochemistry
- Cancer Biology
- Pharmacology
Background:
- Cancer patients treated with BCNU show glutathione reductase (GSSG-R) deficiency and disturbed glutathione (GSH) levels.
- Thiol metabolism and cell proliferation are significantly influenced by nitrosourea drugs.
Purpose of the Study:
- To investigate the interplay between thiol metabolism, cell proliferation, and BCNU in human K562 leukemia.
- To understand the mechanisms underlying BCNU's effects on glutathione metabolism and its impact on cancer cells.
Main Methods:
- Investigated thiol metabolism, cell proliferation, and BCNU interactions in K562 leukemia cells.
- Assessed the effects of BCNU and buthionine-S-R-sulfoximine (BSO) on GSSG-R activity and GSH levels.
- Monitored DNA synthesis and cell proliferation in response to drug treatments.
Main Results:
- BCNU rapidly inactivated GSSG-R, leading to delayed and prolonged GSH formation before inhibiting DNA synthesis.
- Pretreatment with BSO reduced BCNU's GSSG-R inhibitory effects, which diminished with falling GSH levels.
- Altered GSH metabolism created a vulnerability window, potentially contributing to BCNU's antiproliferative effects by interfering with DNA repair and other processes.
- Acquired GSSG-R deficiency served as an early marker for BCNU activation.
Conclusions:
- BCNU induces a critical vulnerability in leukemia cells by disrupting GSSG-R and GSH metabolism, affecting proliferation.
- Drug timing is crucial for modulating thiol and DNA synthesis, influencing therapeutic outcomes.
- GSSG-R deficiency is a sensitive indicator of BCNU prodrug activation and efficacy.
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