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N-myc-Mediated Translation Control Is a Therapeutic Vulnerability in Medulloblastoma
Duygu Kuzuoglu-Ozturk1,2, Ozlem Aksoy2,3, Christin Schmidt2,3
1Department of Urology, University of California, San Francisco, California.
Abstract:
Deregulation of neuroblastoma-derived myc (N-myc) is a leading cause of malignant brain tumors in children. To target N-myc-driven medulloblastoma, most research has focused on identifying genomic alterations or on the analysis of the medulloblastoma transcriptome. Here, we have broadly characterized the translatome of medulloblastoma and shown that N-myc unexpectedly drives selective translation of transcripts that promote protein homeostasis. Cancer cells are constantly exposed to proteotoxic stress associated with alterations in protein production or folding. It remains poorly understood how cancers cope with proteotoxic stress to promote their growth. Here, our data revealed that N-myc regulates the expression of specific components (∼5%) of the protein folding machinery at the translational level through the major cap binding protein, eukaryotic initiation factor eIF4E. Reducing eIF4E levels in mouse models of medulloblastoma blocked tumorigenesis. Importantly, targeting Hsp70, a protein folding chaperone translationally regulated by N-myc, suppressed tumor growth in mouse and human medulloblastoma xenograft models. These findings reveal a previously hidden molecular program that promotes medulloblastoma formation and identify new therapies that may have impact in the clinic.
Significance:
Translatome analysis in medulloblastoma shows that N-myc drives selective translation of transcripts that promote protein homeostasis and that represent new therapeutic vulnerabilities.
Insights
Neuroblastoma-derived myc (N-myc) drives medulloblastoma by selectively translating transcripts that aid protein homeostasis. Targeting protein folding chaperones like Hsp70 offers new therapeutic strategies for these pediatric brain tumors.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Deregulation of N-myc is a key driver of pediatric medulloblastoma.
- Existing research primarily focuses on genomic alterations and transcriptomics.
- The role of the translatome in N-myc-driven medulloblastoma remains underexplored.
Purpose of the Study:
- To characterize the translatome of medulloblastoma.
- To elucidate the role of N-myc in regulating protein homeostasis at the translational level.
- To identify novel therapeutic targets for N-myc-driven medulloblastoma.
Main Methods:
- Broad translatome profiling of medulloblastoma.
- Analysis of N-myc's translational control mechanisms via eukaryotic initiation factor eIF4E.
- In vivo studies using mouse models and human xenografts to assess the impact of targeting eIF4E and Hsp70.
Main Results:
- N-myc selectively translates transcripts promoting protein homeostasis.
- N-myc regulates specific protein folding machinery components via eIF4E.
- Inhibition of eIF4E blocked medulloblastoma tumorigenesis in mouse models.
- Targeting the N-myc-regulated chaperone Hsp70 suppressed tumor growth in preclinical models.
Conclusions:
- N-myc employs a unique translational program to manage proteotoxic stress in medulloblastoma.
- eIF4E and Hsp70 are critical mediators of N-myc's oncogenic function.
- Targeting translational regulation of protein homeostasis presents a promising therapeutic avenue for medulloblastoma.
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