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Modeling Chemotherapy Resistant Leukemia In Vitro
Published on: February 9, 2016
Bcl-2 oncoprotein blocks chemotherapy-induced apoptosis in a human leukemia cell line
1La Jolla Cancer Research Foundation, Cancer Research Institute, CA 92037.
Abstract:
Previous studies have shown that the bcl-2 gene encodes a mitochondrial protein that contributes to neoplastic cell expansion primarily by promoting cell survival through interference with "programmed cell death" (PCD), also termed "apoptosis." Because many chemotherapeutic drugs are capable of initiating pathways leading to apoptosis, we determined whether deregulated bcl-2 expression could render cells resistant to several drugs commonly used in the treatment of non-Hodgkin's lymphomas, including dexamethasone (DEX), methotrexate (MTX), 1-beta-D-arabinofuranosyl-cytosine (Ara-C), etoposide (VP-16), vincristine (VC), cisplatin (CP), and hydroperoxycyclophosphamide (4-HC). For these experiments, we achieved high levels of p26-Bcl-2 protein production in a human pre-B-cell leukemia line 697 by stable infection with a recombinant bcl-2-containing retrovirus and then compared these cells with control virus-infected 697 cells. Control 697 cells were induced to undergo apoptosis by all drugs tested as defined by DNA degradation into oligonucleosomal-length fragments, cell shrinkage, and subsequent cell death. In contrast, 697 cells with elevated Bcl-2 protein levels exhibited strikingly prolonged cell survival and markedly reduced DNA fragmentation when cultured in the presence of these antineoplastic agents. Although high levels of Bcl-2 protein protected 697 cells from the acute cytotoxic effects of DEX and the other drugs tested, Bcl-2 did not prevent these drugs from suppressing the proliferation of 697 cells. However, when 697 cells were treated with DEX or MTX for 3 days, then washed and cultured in semisolid media without drugs, bcl-2-virus-infected cells gave rise to colonies at much higher frequencies than 697 cells stably infected with control virus. These results indicate that by protecting 697 leukemic cells from the acute cytotoxicity of DEX and some other chemotherapeutic drugs, high levels of p26-Bcl-2 can create the opportunity for re-initiation of cell growth when drugs are withdrawn. The findings may be relevant to clinical correlative studies of non-Hodgkin's lymphoma patients that have found an association between worse prognosis and bcl-2 gene rearrangements or t[14;18] translocations.
Insights
High Bcl-2 protein levels in leukemia cells promote survival against chemotherapy drugs, potentially impacting non-Hodgkin's lymphoma treatment outcomes. This resistance may allow cancer cell regrowth after drug withdrawal.
Area of Science:
- Molecular Biology
- Cancer Research
- Cell Biology
Background:
- The bcl-2 gene encodes a mitochondrial protein that inhibits apoptosis (programmed cell death).
- Deregulation of bcl-2 is implicated in neoplastic cell expansion and can contribute to cancer progression.
- Chemotherapeutic drugs often induce apoptosis to eliminate cancer cells.
Purpose of the Study:
- To investigate if elevated bcl-2 expression confers resistance to common chemotherapeutic agents used for non-Hodgkin's lymphomas.
- To determine the effect of high Bcl-2 protein levels on drug-induced apoptosis and cell survival in leukemia cells.
Main Methods:
- Human pre-B-cell leukemia line 697 was stably infected with a retrovirus containing the bcl-2 gene to achieve high p26-Bcl-2 protein levels.
- Control cells were infected with a control virus.
- Both cell types were exposed to various chemotherapeutic drugs (dexamethasone, methotrexate, etc.) and assessed for apoptosis markers and proliferation.
Main Results:
- Cells with high Bcl-2 protein levels showed significantly prolonged survival and reduced DNA fragmentation when treated with chemotherapeutic agents.
- While Bcl-2 conferred resistance to acute cytotoxicity, it did not prevent drug-induced suppression of proliferation.
- After drug withdrawal, bcl-2-overexpressing cells demonstrated higher colony formation frequencies, indicating re-initiation of growth.
Conclusions:
- Elevated Bcl-2 protein levels protect leukemia cells from the acute cytotoxic effects of certain chemotherapy drugs.
- This protection can lead to the re-initiation of cell growth upon cessation of drug treatment.
- Findings suggest a potential role for bcl-2 in therapeutic resistance and poorer prognosis in non-Hodgkin's lymphoma patients.
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