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Rapid detection of an ABT-737-sensitive primed for death state in cells using microplate-based respirometry
Pascaline Clerc1, Gregory B Carey, Zara Mehrabian
1Department of Anesthesiology and the Shock, Trauma and Anesthesiology Research Center, University of Maryland School of Medicine, Baltimore, Maryland, United States of America.
Abstract:
Cells that exhibit an absolute dependence on the anti-apoptotic BCL-2 protein for survival are termed "primed for death" and are killed by the BCL-2 antagonist ABT-737. Many cancers exhibit a primed phenotype, including some that are resistant to conventional chemotherapy due to high BCL-2 expression. We show here that 1) stable BCL-2 overexpression alone can induce a primed for death state and 2) that an ABT-737-induced loss of functional cytochrome c from the electron transport chain causes a reduction in maximal respiration that is readily detectable by microplate-based respirometry. Stable BCL-2 overexpression sensitized non-tumorigenic MCF10A mammary epithelial cells to ABT-737-induced caspase-dependent apoptosis. Mitochondria within permeabilized BCL-2 overexpressing cells were selectively vulnerable to ABT-737-induced cytochrome c release compared to those from control-transfected cells, consistent with a primed state. ABT-737 treatment caused a dose-dependent impairment of maximal O(2) consumption in MCF10A BCL-2 overexpressing cells but not in control-transfected cells or in immortalized mouse embryonic fibroblasts lacking both BAX and BAK. This impairment was rescued by delivering exogenous cytochrome c to mitochondria via saponin-mediated plasma membrane permeabilization. An ABT-737-induced reduction in maximal O(2) consumption was also detectable in SP53, JeKo-1, and WEHI-231 B-cell lymphoma cell lines, with sensitivity correlating with BCL-2:MCL-1 ratio and with susceptibility (SP53 and JeKo-1) or resistance (WEHI-231) to ABT-737-induced apoptosis. Multiplexing respirometry assays to ELISA-based determination of cytochrome c redistribution confirmed that respiratory inhibition was associated with cytochrome c release. In summary, cell-based respiration assays were able to rapidly identify a primed for death state in cells with either artificially overexpressed or high endogenous BCL-2. Rapid detection of a primed for death state in individual cancers by "bioenergetics-based profiling" may eventually help identify the subset of patients with chemoresistant but primed tumors who can benefit from treatment that incorporates a BCL-2 antagonist.
Insights
Cells dependent on BCL-2 are "primed for death" and killed by ABT-737. Respiration assays detect this primed state in cancers, aiding BCL-2 antagonist treatment selection for chemoresistant tumors.
Area of Science:
- Cell Biology
- Cancer Biology
- Biochemistry
Background:
- Cells reliant on BCL-2 for survival are susceptible to BCL-2 antagonists.
- Cancer cells with high BCL-2 expression can be chemoresistant.
- A
Purpose of the Study:
- To investigate if BCL-2 overexpression induces a "primed for death" state.
- To determine if BCL-2 antagonism impairs cellular respiration via cytochrome c release.
- To establish respirometry as a method for identifying primed cancer cells.
Main Methods:
- Stable BCL-2 overexpression in MCF10A cells.
- Treatment with BCL-2 antagonist ABT-737.
- Microplate-based respirometry to measure maximal oxygen consumption.
- Cytochrome c release assays (ELISA).
Main Results:
- BCL-2 overexpression sensitized cells to ABT-737-induced apoptosis and cytochrome c release.
- ABT-737 impaired maximal respiration in BCL-2 overexpressing cells, linked to cytochrome c release.
- Respirometry detected this impairment in B-cell lymphoma lines, correlating with BCL-2:MCL-1 ratio and drug sensitivity.
Conclusions:
- Cell-based respiration assays can rapidly identify a "primed for death" state.
- This "bioenergetics-based profiling" may identify chemoresistant cancers benefiting from BCL-2 antagonists.
- Findings support using respirometry to guide BCL-2 antagonist therapy.
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