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1. Ryanodine receptor type 1 content decrease‐induced endoplasmic reticulum stress is a hallmark of myopathies

2. Oxidative stress‐induced FAK activation contributes to uterine serous carcinoma aggressiveness

3. CDK4 is an essential insulin effector in adipocytes

4. Acute RyR1 Ca2+ leak enhances NADH-linked mitochondrial respiratory capacity

5. CDK4 is an essential insulin effector in adipocytes

6. Sex-Biased Control of Inflammation and Metabolism by a Mitochondrial Nod-Like Receptor

7. A genetic screen identifies Crat as a regulator of pancreatic beta-cell insulin secretion

8. CDK7 Mediates the Beta-Adrenergic Signaling in Thermogenic Brown and White Adipose Tissues

9. Glucose Starvation or Pyruvate Dehydrogenase Activation Induce a Broad, ERK5-Mediated, Metabolic Remodeling Leading to Fatty Acid Oxidation

10. E2F1 promotes hepatic gluconeogenesis and contributes to hyperglycemia during diabetes

11. Cdkn2a deficiency promotes adipose tissue browning

12. The PDK1 Inhibitor Dichloroacetate Controls Cholesterol Homeostasis Through the ERK5/MEF2 Pathway

13. Modulation of mTOR Signalling Triggers the Formation of Stem Cell-like Memory T Cells

14. Mammalian Target of Rapamycin Complex 2 Controls CD8 T Cell Memory Differentiation in a Foxo1-Dependent Manner

15. Supplementary Figures with Figure legends. from CDK4 Regulates Lysosomal Function and mTORC1 Activation to Promote Cancer Cell Survival

16. Data from CDK4 Regulates Lysosomal Function and mTORC1 Activation to Promote Cancer Cell Survival

17. Supplementary Tables from CDK4 Regulates Lysosomal Function and mTORC1 Activation to Promote Cancer Cell Survival

19. Adipocyte-specific CDK7 ablation leads to progressive loss of adipose tissue and metabolic dysfunction

20. Enforced PGC-1α expression promotes CD8 T cell fitness, memory formation and antitumor immunity

21. CDK4 Regulates Lysosomal Function and mTORC1 Activation to Promote Cancer Cell Survival

22. Acute RyR1 Ca

23. Hypothalamic CDK4 regulates thermogenesis by modulating sympathetic innervation of adipose tissues

24. Lamin C Counteracts Glucose Intolerance in Aging, Obesity, and Diabetes Through β-Cell Adaptation

25. Tanycytes Regulate Lipid Homeostasis by Sensing Free Fatty Acids and Signaling to Key Hypothalamic Neuronal Populations via FGF21 Secretion

26. Contrôle de l’homéostasie glucido-lipidique par les facteurs du cycle cellulaire CDK4 et E2F1

27. PamgeneAnalyzeR open and reproducible pipeline for kinase profiling

28. Inter-organ communication: a gatekeeper for metabolic health

29. CDK4 is an essential insulin effector in adipocytes

30. E2F1 promotes hepatic gluconeogenesis and contributes to hyperglycemia during diabetes

31. Dietary Fiber Confers Protection against Flu by Shaping Ly6c

32. Pharmacological modulation of LMNA SRSF1-dependent splicing abrogates diet-induced obesity in mice

33. Tissue-specific and SRSF1-dependent splicing of fibronectin, a matrix protein that controls host cell invasion

34. [Cell cycle regulators CDK4 and E2F1 control glucose and lipid homeostasis]

35. Role of cell cycle regulators in adipose tissue and whole body energy homeostasis

36. A conserved splicing mechanism of the LMNA gene controls premature aging

37. CDK4, a new metabolic sensor that antagonizes AMPK

38. Dietary Fiber Confers Protection against Flu by Shaping Ly6c− Patrolling Monocyte Hematopoiesis and CD8+ T Cell Metabolism

39. Modulation of mTOR Signalling Triggers the Formation of Stem Cell-like Memory T Cells

40. E2F1 mediates sustained lipogenesis and contributes to hepatic steatosis

41. CDK4 is an essential insulin effector in adipocytes

42. Antagonistic functions of LMNA isoforms in energy expenditure and lifespan

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