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Molecular ordering of apoptosis induced by anticancer drugs in neuroblastoma cells
Abstract:
Apoptosis mediated by anticancer drugs may involve activation of death-inducing ligand/receptor systems such as CD95 (APO-1/Fas), cleavage of caspases, and perturbance of mitochondrial functions. We investigated the sequence of these events in SHEP neuroblastoma cells transfected with Bcl-2 or Bcl-X(L) using two different drugs, namely, doxorubicin (Doxo), which activates the CD95/CD95 ligand (CD95-L) system, and betulinic acid (Bet A), which does not enhance the expression of CD95 or CD95-L and which, as shown here, directly targets mitochondria. Apoptosis induced by both drugs was inhibited by Bcl-2 or Bcl-X(L) overexpression or by bongkrekic acid, an agent that stabilizes mitochondrial membrane barrier function, suggesting a critical role for mitochondria. After Doxo treatment, enhanced CD95/CD95-L expression and caspase-8 activation were not blocked by Bcl-2 or Bcl-X(L) and were found in cells with a mitochondrial transmembrane potential (delta psi(m)) that was still normal (delta psi(m)high cells). In marked contrast, after Bet A treatment, caspase-8 activation occurred in a Bcl-2- or Bcl-X(L)-inhibitable fashion and was confined to cells that had lost their delta psi(m) (delta psi(m)low cells). Mitochondria from cells treated with either Doxo or Bet A induced cleavage of both caspase-8 and caspase-3 in cytosolic extracts. Thus, caspase-8 activation may occur upstream or downstream of mitochondria, depending on the apoptosis-initiating stimulus. In contrast to caspase-8, cleavage of caspase-3 or poly(ADP-ribose)polymerase was always restricted to delta psi(m)low cells, downstream of the Bcl-2- or Bcl-X(L)-controlled checkpoint of apoptosis. Cytochrome c, released from mitochondria undergoing permeability transition, activated caspase-3 but not caspase-8 in a cell-free system. However, both caspases were activated by apoptosis-inducing factor, indicating that the mechanism of caspase-8 activation differed from that of caspase-3 activation. Taken together, our findings demonstrate that perturbance of mitochondrial function constitutes a central coordinating event in drug-induced cell death.
Insights
Anticancer drugs trigger apoptosis through mitochondrial dysfunction. The timing of caspase activation relative to mitochondrial events depends on the drug, highlighting mitochondria
Area of Science:
- Cell Biology
- Biochemistry
- Pharmacology
Background:
- Anticancer drug-induced apoptosis involves death receptors, caspases, and mitochondrial pathways.
- Bcl-2 and Bcl-X(L) proteins regulate mitochondrial apoptosis.
- Doxorubicin (Doxo) activates CD95/CD95-L, while betulinic acid (Bet A) targets mitochondria directly.
Purpose of the Study:
- Investigate the sequence of apoptosis events induced by Doxo and Bet A in neuroblastoma cells.
- Determine the role of mitochondria and caspase activation in drug-induced apoptosis.
- Clarify the differential mechanisms of caspase-8 and caspase-3 activation.
Main Methods:
- SHEP neuroblastoma cells were transfected with Bcl-2 or Bcl-X(L).
- Cells were treated with Doxo or Bet A.
- Mitochondrial transmembrane potential (delta psi(m)), CD95/CD95-L expression, and caspase cleavage were analyzed.
- Mitochondria and cytosolic extracts were used in cell-free assays.
Main Results:
- Both Doxo and Bet A induced apoptosis, inhibited by Bcl-2/Bcl-X(L) or bongkrekic acid, confirming a role for mitochondria.
- Doxo-induced CD95/CD95-L expression and caspase-8 activation occurred independently of mitochondrial membrane potential loss.
- Bet A-induced caspase-8 activation was Bcl-2/Bcl-X(L)-inhibitable and occurred in cells with lost delta psi(m).
- Caspase-3 and PARP cleavage were consistently downstream of mitochondrial events and Bcl-2/Bcl-X(L) control.
- Mitochondria from treated cells induced caspase-8 and caspase-3 cleavage in vitro.
Conclusions:
- Mitochondrial dysfunction is central to drug-induced apoptosis.
- Caspase-8 activation can occur upstream or downstream of mitochondria, depending on the stimulus.
- Caspase-3 activation is downstream of mitochondrial permeability transition and Bcl-2/Bcl-X(L) regulation.
- Distinct mechanisms govern caspase-8 and caspase-3 activation during apoptosis.