MycN sensitizes neuroblastoma cells for drug-induced apoptosis
Abstract:
Amplification of the MYCN gene is found in a large proportion of neuroblastoma and considered as an adverse prognostic factor. To investigate the effect of ectopic MycN expression on the susceptibility of neuroblastoma cells to cytotoxic drugs we used a human neuroblastoma cell line harboring tetracycline-controlled expression of MycN. Neither conditional expression of MycN alone nor low drug concentrations triggered apoptosis. However, when acting in concert, MycN and cytotoxic drugs efficiently induced cell death. Apoptosis depended on mitochondrial permeability transition and activation of caspases, since the mitochondrion-specific inhibitor bongkrekic acid and the caspase inhibitor zVAD-fmk almost completely abrogated apoptosis. Loss of mitochondrial transmembrane potential and release of cytochrome c from mitochondria preceded activation of caspase-8 and caspase-3 and cleavage of PARP. CD95 expression was upregulated by treatment with cytotoxic drugs, while MycN cooperated with cytotoxic drugs to increase sensitivity to CD95-induced apoptosis and enhancing CD95-L expression. MycN overexpression and cytotoxic drugs also synergized to induce p53 and Bax protein expression, while Bcl-2 and Bcl-X(L) protein levels remained unchanged. Since amplification of MYCN is usually associated with a poor prognosis, these findings suggest that dysfunctions in apoptosis pathways may be a mechanism by which MycN-induced apoptosis of neuroblastoma cells is inhibited.
Insights
Neuroblastoma cells with amplified MYCN (myelocytomatosis oncogene) become more sensitive to cytotoxic drugs when MycN is expressed. This combination efficiently induces apoptosis, a programmed cell death pathway, through mitochondrial mechanisms.
Area of Science:
- Oncology
- Molecular Biology
- Cell Death Research
Background:
- MYCN gene amplification is common in neuroblastoma and linked to poor prognosis.
- Understanding how MYCN influences treatment response is crucial for neuroblastoma therapy.
Purpose of the Study:
- To investigate the impact of ectopic MycN expression on neuroblastoma cell sensitivity to cytotoxic drugs.
- To elucidate the molecular mechanisms underlying MycN-mediated sensitization to apoptosis.
Main Methods:
- Utilized a human neuroblastoma cell line with tetracycline-controlled MycN expression.
- Assessed apoptosis induction by combining MycN expression with cytotoxic drugs.
- Investigated the roles of mitochondrial permeability transition, caspases, CD95, and apoptosis-related proteins (p53, Bax, Bcl-2).
Main Results:
- Conditional MycN expression alone or low drug concentrations did not induce apoptosis.
- Concerted action of MycN and cytotoxic drugs efficiently induced apoptosis.
- Apoptosis was dependent on mitochondrial permeability transition and caspase activation.
- MycN sensitized cells to CD95-mediated apoptosis and enhanced CD95-L expression.
- MycN and cytotoxic drugs synergized to upregulate p53 and Bax, without affecting Bcl-2 or Bcl-X(L).
Conclusions:
- MycN overexpression sensitizes neuroblastoma cells to cytotoxic drugs, promoting apoptosis via mitochondrial pathways.
- Dysregulation of apoptosis pathways may contribute to the poor prognosis associated with MYCN amplification in neuroblastoma.
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