Bcl-2 oncoprotein blocks chemotherapy-induced apoptosis in a human leukemia cell line

T Miyashita1, J C Reed

  • 1La Jolla Cancer Research Foundation, Cancer Research Institute, CA 92037.

Blood
|January 1, 1993
PubMed

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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