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2. Atrial Natriuretic Peptide Orchestrates a Coordinated Physiological Response to Fuel Non-shivering Thermogenesis

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

8. Interaction between hormone-sensitive lipase and ChREBP in fat cells controls insulin sensitivity

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

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

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

16. Liver PPARα is crucial for whole-body fatty acid homeostasis and is protective against NAFLD

17. CDK4 deletion in mice prevents fat accumulation and increases endurance capacity through activation of estrogen related receptor (ERR)driven oxidative metabolism in skeletal muscle

20. Hypothalamic CDK 4 regulates thermogenesis by modulating sympathetic innervation of adipose tissues

21. Hepatocyte-specific deletion of Pparα promotes NAFLD in the context of obesity

23. Atrial natriuretic peptide orchestrates a coordinated physiological response to fuel non shivering thermogenesis

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

25. Mitochondrial fission is associated with UCP1 activity in human brite/beige adipocytes

26. Hypothalamic CDK4 Regulates Thermogenesis by Modulating the Sympathetic Innervation and Activation of Brown Adipose Tissue

27. Hepatocyte-specific deletion of Pparα promotes NASH in the context of obesity

28. Interaction between hormone-sensitive lipase and ChREBP in fat cells controls insulin sensitivity

30. Chronic oxidizing stress is linked to an improvement of insulin sensitivity and mitochondrial functions of skeletal muscles of SAMP8

31. Skeletal muscle insulin resistance physiopathology and mitochondrial function

32. Fonctions mitochondriales et étiologie de la résistance à l'insuline dans le muscle : approches chez l'homme et sur modèles animaux

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