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1. Tumor-associated mutant p53 promotes cancer cell survival upon glutamine deprivation through p21 induction

2. Alpha-Ketoglutarate Regulates Tnfrsf12a/Fn14 Expression via Histone Modification and Prevents Cancer-Induced Cachexia.

3. The B56α subunit of PP2A is necessary for mesenchymal stem cell commitment to adipocyte.

4. Dietary glutamine supplementation suppresses epigenetically-activated oncogenic pathways to inhibit melanoma tumour growth.

5. α-Ketoglutarate attenuates Wnt signaling and drives differentiation in colorectal cancer.

6. p53 Promotes Cancer Cell Adaptation to Glutamine Deprivation by Upregulating Slc7a3 to Increase Arginine Uptake.

7. MiR-135 suppresses glycolysis and promotes pancreatic cancer cell adaptation to metabolic stress by targeting phosphofructokinase-1.

8. IKKβ activates p53 to promote cancer cell adaptation to glutamine deprivation.

9. Glutamine deficiency induces DNA alkylation damage and sensitizes cancer cells to alkylating agents through inhibition of ALKBH enzymes.

10. Molecular Pathways: Metabolic Control of Histone Methylation and Gene Expression in Cancer.

11. Cytosolic malate dehydrogenase activity helps support glycolysis in actively proliferating cells and cancer.

12. Regional glutamine deficiency in tumours promotes dedifferentiation through inhibition of histone demethylation.

13. IKKβ promotes metabolic adaptation to glutamine deprivation via phosphorylation and inhibition of PFKFB3.

14. Transcription factor C/EBP-β induces tumor-suppressor phosphatase PHLPP2 through repression of the miR-17-92 cluster in differentiating AML cells.

15. Vemurafenib resistance reprograms melanoma cells towards glutamine dependence.

16. The proapoptotic function of Noxa in human leukemia cells is regulated by the kinase Cdk5 and by glucose.

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