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1. New Brain Tumor Entities Emerge from Molecular Classification of CNS-PNETs

2. New Brain Tumor Entities Emerge from Molecular Classification of CNS-PNETs

3. New Brain Tumor Entities Emerge from Molecular Classification of CNS-PNETs

4. Hypermutation of the Inactive X Chromosome Is a Frequent Event in Cancer.

5. Genome Sequencing of Pediatric Medulloblastoma Links Catastrophic DNA Rearrangements with TP53 Mutations

6. A Single-Cell Transcriptional Atlas of the Developing Murine Cerebellum.

7. MLL4 Is Required to Maintain Broad H3K4me3 Peaks and Super-Enhancers at Tumor Suppressor Genes.

8. Low-coverage whole-genome sequencing of cerebrospinal-fluid-derived cell-free DNA in brain tumor patients.

9. Serial assessment of measurable residual disease in medulloblastoma liquid biopsies.

10. Pattern of Relapse and Treatment Response in WNT-Activated Medulloblastoma.

11. Comprehensive Analysis of Chromatin States in Atypical Teratoid/Rhabdoid Tumor Identifies Diverging Roles for SWI/SNF and Polycomb in Gene Regulation.

12. Proteomics, Post-translational Modifications, and Integrative Analyses Reveal Molecular Heterogeneity within Medulloblastoma Subgroups.

13. NRL and CRX Define Photoreceptor Identity and Reveal Subgroup-Specific Dependencies in Medulloblastoma.

14. Inactivation of Ezh2 Upregulates Gfi1 and Drives Aggressive Myc-Driven Group 3 Medulloblastoma.

15. Atypical Teratoid/Rhabdoid Tumors Are Comprised of Three Epigenetic Subgroups with Distinct Enhancer Landscapes.

16. New Brain Tumor Entities Emerge from Molecular Classification of CNS-PNETs.

17. The Shh receptor Boc promotes progression of early medulloblastoma to advanced tumors.

18. Quiescent sox2(+) cells drive hierarchical growth and relapse in sonic hedgehog subgroup medulloblastoma.

19. Genome sequencing of SHH medulloblastoma predicts genotype-related response to smoothened inhibition.

20. Reduced H3K27me3 and DNA hypomethylation are major drivers of gene expression in K27M mutant pediatric high-grade gliomas.

21. The eEF2 kinase confers resistance to nutrient deprivation by blocking translation elongation.

22. Distinct neural stem cell populations give rise to disparate brain tumors in response to N-MYC.

23. An animal model of MYC-driven medulloblastoma.

24. Delineation of two clinically and molecularly distinct subgroups of posterior fossa ependymoma.

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