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1. Cell state dependent effects of Bmal1 on melanoma immunity and tumorigenicity

2. MYC disrupts transcriptional and metabolic circadian oscillations in cancer and promotes enhanced biosynthesis.

3. Dynamic Imaging of LDH Inhibition in Tumors Reveals Rapid In Vivo Metabolic Rewiring and Vulnerability to Combination Therapy

4. Misregulation of Drosophila Myc Disrupts Circadian Behavior and Metabolism

6. The Ketogenic Diet Does Not Affect Growth of Hedgehog Pathway Medulloblastoma in Mice.

7. Targeting senescent stemlike subpopulations in Philadelphia chromosome-like acute lymphoblastic leukemia

9. Cell-type independent MYC target genes reveal a primordial signature involved in biomass accumulation.

10. Time-dependent c-Myc transactomes mapped by Array-based nuclear run-on reveal transcriptional modules in human B cells.

11. MYC overexpression induces prostatic intraepithelial neoplasia and loss of Nkx3.1 in mouse luminal epithelial cells.

12. Global regulation of nucleotide biosynthetic genes by c-Myc.

14. Drugging the “Undruggable” MYCN Oncogenic Transcription Factor: Overcoming Previous Obstacles to Impact Childhood Cancers

17. Epigenetic state determines inflammatory sensing in neuroblastoma

20. Acid Suspends the Circadian Clock in Hypoxia through Inhibition of mTOR

23. Drugging the 'undruggable' cancer targets

26. Survival after out-of-hospital cardiac arrest, Viet Nam: multicentre prospective cohort study/ Survie apres un arret cardiaque hors hopital au Viet Nam: etude de cohorte prospective multicentrique/ Supervivencia despues de un paro cardiaco extrahospitalario en Vietnam: un estudio de cohorte prospectiva multicentrico

28. Redefining the Etiologic Landscape of Cerebellar Malformations

31. Cell state dependent effects of Bmal1 on melanoma immunity and tumorigenicity

33. Hypermetabolic state is associated with circadian rhythm disruption in mouse and human cancer cells.

42. MYC-driven increases in mitochondrial DNA copy number occur early and persist throughout prostatic cancer progression

43. Hypermetabolic state is associated with circadian rhythm disruption in mouse and human cancer cells

49. Clock Regulation of Metabolites Reveals Coupling between Transcription and Metabolism

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