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Expression of bcl-xL can confer a multidrug resistance phenotype
A J Minn1, C M Rudin, L H Boise
1Gwen Knapp Center for Lupus and Immunology Research, Department of Medicine, University of Chicago, IL 60637-5420, USA.
Abstract:
It has been suggested that genes that regulate apoptotic cell death may play an important role in determining the sensitivity of tumor cells to chemotherapy. We have recently cloned a member of the bcl-2 family, bcl-x. To test whether bcl-XL expression affects the sensitivity of tumor cells to chemotherapy, we have created stable cell lines overexpressing bcl-XL and have tested these cells for resistance to cell death induced by metabolic inhibitors and chemotherapeutic agents. Bcl-XL expression dramatically reduces the cytotoxicity of bleomycin, cisplatin, etoposide, vincristine, hygromycin B, and mycophenolic acid for up to 4 days in culture. Bcl-XL does not prevent cells from undergoing cell cycle arrest in response to these drugs, but rather prevents treated cells from undergoing apoptosis. Cell-cycle analysis on cells treated with the chemotherapeutic agents bleomycin, cisplatin, etoposide, and vincristine, show that the drugs cause growth arrest in different positions within the cell cycle. Bcl-XL expressing cells treated with chemotherapeutic drugs retain their proliferative ability after the drugs are removed. Interestingly, vincristine-treated cells expressing bcl-XL become polyploid after drug removal. These data show that bcl-XL protects cells from a wide variety of apoptotic stimuli, acts in multiple positions within the cell cycle, and confers a multidrug resistance phenotype. The ability of bcl-XL to prevent apoptotic cell death in response to chemotherapy-induced DNA damage and cell-cycle arrest may contribute to the accumulation of chromosomal aberrations within tumors. The expression of bcl-XL in tumor cells is likely to be an important indicator of chemotherapeutic efficacy.
Insights
The anti-apoptotic gene bcl-XL significantly reduces tumor cell sensitivity to chemotherapy drugs. Overexpression of bcl-XL confers multidrug resistance by preventing apoptosis, not cell cycle arrest.
Area of Science:
- Molecular Biology
- Cancer Research
- Cell Biology
Background:
- Apoptotic cell death regulation is crucial for tumor cell chemotherapy sensitivity.
- The bcl-2 family gene, bcl-XL, is a key regulator of apoptosis.
Purpose of the Study:
- To investigate the effect of bcl-XL gene expression on tumor cell sensitivity to chemotherapy.
- To determine if bcl-XL confers resistance to various cytotoxic agents.
Main Methods:
- Creation of stable cell lines overexpressing bcl-XL.
- Testing cell resistance to metabolic inhibitors and chemotherapeutic agents.
- Cell-cycle analysis of drug-treated cells.
Main Results:
- Bcl-XL overexpression dramatically reduced cytotoxicity of bleomycin, cisplatin, etoposide, vincristine, hygromycin B, and mycophenolic acid.
- Bcl-XL prevented apoptosis but not cell cycle arrest in response to chemotherapy.
- Cells expressing bcl-XL retained proliferative ability after drug removal and exhibited a multidrug resistance phenotype.
Conclusions:
- Bcl-XL protects cells from diverse apoptotic stimuli across multiple cell cycle positions.
- Bcl-XL confers a multidrug resistance phenotype, potentially impacting chemotherapeutic efficacy.
- Bcl-XL expression may indicate treatment outcomes and contribute to chromosomal aberrations in tumors.