BCL-2 family protein expression and platinum drug resistance in ovarian carcinoma.
File(s)
Author(s)
Beale, PJ
Rogers, P
Boxall, F
Sharp, SY
Kelland, LR
Type
Journal Article
Abstract
The expression of the BCL-2 family proteins, BCL-2, BAX, BCL(XL) and BAK have been determined in a panel of 12 human ovarian carcinoma cell lines encompassing a wide range in sensitivity to cisplatin. Whereas BAX, BCL(XL) and BAK levels did not correlate with sensitivity, there was a statistically significant inverse correlation (r = -0.81; P = 0.002) between growth inhibition by cisplatin and BCL-2 levels. In sublines possessing acquired resistance to various platinum-based drugs or across a panel of human ovarian carcinoma xenografts, there was no consistent pattern of BCL-2 expression. Two relatively sensitive lines (A2780 and CH1) have been stably transfected with bcl-2 and bcl(XL) respectively and two relatively resistant lines (A2780cisR and SKOV-3) stably transfected with bax. Overexpression of BCL-2 in A2780 cells led to resistance to cisplatin compared to the vector control when assayed at 48 h post-drug incubation but a significant increase in sensitivity at 96 h. Relative rates of apoptosis at 48- and 96-h post-cisplatin exposure mirrored the growth inhibition. There was no significant difference in sensitivity of the pair of lines by clonogenic assay. No significant changes in chemosensitivity to a variety of DNA-damaging or tubulin-interactive agents were observed in the remaining transfected lines. Taken together, these results suggest that, in human ovarian carcinoma cells, high BCL-2 levels (either naturally occurring or through gene transfection) confers a trend towards sensitivity not resistance to platinum drugs.
Date Issued
2000-01
Date Acceptance
1999-09-14
Citation
British Journal of Cancer, 2000, 82 (2), pp.436-440
ISSN
0007-0920
Publisher
Springer Nature [academic journals on nature.com]
Start Page
436
End Page
440
Journal / Book Title
British Journal of Cancer
Volume
82
Issue
2
Copyright Statement
© 2000 Cancer Research Campaign. This paper was modified 12 months after initial publication to switch to Creative Commons licence terms, as noted at publication
References
References
License URL
Identifier
https://www.ncbi.nlm.nih.gov/pubmed/10646901
PII: S0007092099909394
Subjects
Antineoplastic Agents
Apoptosis
Base Sequence
Cisplatin
DNA Damage
Drug Resistance, Neoplasm
Female
Genes, bcl-2
Humans
Molecular Sequence Data
Ovarian Neoplasms
Transplantation, Heterologous
Tumor Cells, Cultured
Publication Status
Published
Coverage Spatial
England
Date Publish Online
1999-12-17