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Targeting Functional Activity of AKT Has Efficacy against Aggressive Neuroblastoma
Marion Le Grand1,2,3, Kathleen Kimpton1,2, Christine C Gana1,3
1Children's Cancer Institute, Lowy Cancer Research Centre, UNSW, Sydney, New South Wales 2052, Australia.
Abstract:
MYCN-amplified neuroblastoma is one of the deadliest forms of childhood cancer and remains a significant clinical challenge. Direct pharmacological inhibition of MYCN is not currently achievable. One strategy could be to target the AKT/GSK3β pathway, which directly regulates the stability of the MYCN protein. Numerous potent and isoform-specific small-molecule AKT inhibitors have been developed. However, the selection of the right drug combinations in the relevant indication will have a significant impact on AKT inhibitor clinical success. To maximally exploit the potential of AKT inhibitors, a better understanding of AKT isoform functions in cancer is crucial. Here using RNAi to downregulate specific AKT isoforms, we demonstrated that loss of total AKT activity rather than isoform-specific expression was necessary to decrease MYCN expression and cause a significant decrease in neuroblastoma cell proliferation. Consistent with these observations, isoform-specific pharmacological inhibition of AKT was substantially less effective than pan-AKT inhibition in combination with cytotoxic drugs in MYCN-amplified neuroblastoma. The allosteric pan-AKT inhibitor perifosine had promising in vitro and in vivo activity in combination with conventional cytotoxic drugs in MYCN-amplified neuroblastoma cells. Our results demonstrated that perifosine drug combination was able to induce apoptosis and downregulate ABC transporter expression. Collectively, this study shows that selecting pan-AKT inhibitors rather than isoform-specific drugs to synergize with first-line chemotherapy treatment should be considered for clinical trials for aggressive neuroblastoma and, potentially, other MYCN -driven cancers.
Insights
Pan-AKT inhibitors, not isoform-specific ones, effectively target MYCN-amplified neuroblastoma. Combining pan-AKT inhibition with chemotherapy shows promise for treating this aggressive childhood cancer.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- MYCN-amplified neuroblastoma is a deadly childhood cancer with no direct MYCN inhibitors.
- The AKT/GSK3β pathway regulates MYCN protein stability, presenting a therapeutic target.
- Understanding AKT isoform function is crucial for effective AKT inhibitor drug combinations.
Purpose of the Study:
- To investigate the role of AKT isoforms in MYCN-driven neuroblastoma.
- To evaluate the efficacy of isoform-specific versus pan-AKT inhibition in combination with cytotoxic drugs.
- To determine the potential of perifosine as a pan-AKT inhibitor in neuroblastoma treatment.
Main Methods:
- RNA interference (RNAi) to downregulate specific AKT isoforms.
- Pharmacological inhibition of AKT isoforms and pan-AKT.
- Combination therapy studies with cytotoxic drugs in neuroblastoma cell lines and in vivo models.
Main Results:
- Loss of total AKT activity, not specific isoforms, reduced MYCN expression and neuroblastoma cell proliferation.
- Pan-AKT inhibition combined with cytotoxic drugs was more effective than isoform-specific inhibition.
- The pan-AKT inhibitor perifosine demonstrated significant in vitro and in vivo activity, inducing apoptosis and downregulating ABC transporters.
Conclusions:
- Pan-AKT inhibitors, like perifosine, show promise in combination with chemotherapy for MYCN-amplified neuroblastoma.
- Clinical trials should consider pan-AKT inhibitors for aggressive neuroblastoma and potentially other MYCN-driven cancers.
- Targeting total AKT activity offers a viable strategy for treating aggressive neuroblastoma.
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