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Published on: May 14, 2016
WEE1 accumulation and deregulation of S-phase proteins mediate MLN4924 potent inhibitory effect on Ewing sarcoma
C Mackintosh1, D J García-Domínguez, J L Ordóñez
1Molecular Pathology Program, IBSAL-Centro de Investigación del Cáncer-IBMCC (USAL-CSIC), Campus Miguel de Unamuno S/N, Salamanca, Spain.
Abstract:
Ewing sarcoma (ES) is an aggressive bone and soft tissue tumor of children and young adults in which finding effective new targeted therapies is imperative. Here, we report an in-depth preclinical study of the investigational cullin-RING ubiquitin ligase (CRL) inhibitor MLN4924 in ES, as we have recently demonstrated the implication of a CRL component in the ES pathogenesis. First, our results support a high sensitivity of ES cells to MLN4924 growth inhibition both in vitro (14 ES cell lines tested, median IC50=81 nM) and in tumor xenografts (tumor regression achieved with 60 mg/kg BID, subcutaneously, n=9). Second, we report a dual mechanism of action of MLN4924 in ES cells: while a wide range of MLN4924 concentrations (∼30-300 nM) trigger a G2 arrest that can only be rescued by WEE1 kinase inhibition or depletion, saturating doses of the drug (>300 nM) cause a delay in S-phase progression concomitant with unbalanced CDK2-Cyclin E and CDK2-Cyclin A relative levels (accumulation of the first and depletion of the latter). The aberrant presence of CDC6 in the nucleus at late S-phase cell cycle stage confirmed the loss of CDK2-Cyclin A-specific functions. Remarkably, other mechanisms explored (P27 accumulation and DNA damage signaling pathways) were found unable to explain MLN4924 effects, strengthening the specificity of our findings and suggesting the absence of functionality of some CRL substrates accumulated in response to MLN4924. This study renders a rationale for clinical trials and contributes molecular mechanisms for a better understanding of this promising antitumoral agent.
Insights
The investigational drug MLN4924 effectively inhibits Ewing sarcoma (ES) growth in preclinical models. This cullin-RING ubiquitin ligase (CRL) inhibitor shows promise as a targeted therapy for this aggressive pediatric cancer.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Ewing sarcoma (ES) is an aggressive pediatric bone and soft tissue cancer requiring novel targeted therapies.
- Cullin-RING ubiquitin ligase (CRL) pathway components are implicated in ES pathogenesis.
- MLN4924 is an investigational CRL inhibitor with potential therapeutic applications.
Purpose of the Study:
- To evaluate the preclinical efficacy of MLN4924 in Ewing sarcoma.
- To elucidate the molecular mechanisms of MLN4924 action in ES cells.
- To provide a rationale for clinical trials of MLN4924 in ES.
Main Methods:
- In vitro drug sensitivity testing across 14 ES cell lines.
- In vivo efficacy studies using ES tumor xenografts in mice.
- Cell cycle analysis (G2 arrest, S-phase delay) and Western blotting to assess protein levels and cellular mechanisms.
Main Results:
- MLN4924 demonstrated potent growth inhibition of ES cells (median IC50=81 nM) and significant tumor regression in xenografts.
- MLN4924 induced G2 arrest at lower concentrations and S-phase delay at higher concentrations.
- Observed mechanisms included unbalanced CDK2-Cyclin E/A levels and aberrant nuclear CDC6, suggesting specific CRL substrate effects.
Conclusions:
- MLN4924 exhibits significant preclinical efficacy against Ewing sarcoma.
- The drug's dual mechanism of action involves cell cycle arrest and S-phase progression delay.
- These findings support MLN4924 as a promising targeted therapy warranting further clinical investigation for ES.
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