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1. A mild increase in nutrient signaling to mTORC1 in mice leads to parenchymal damage, myeloid inflammation and shortened lifespan

3. Lack of p38 activation in T cells increases IL-35 and protects against obesity by promoting thermogenesis

4. Tryptophan-containing proteins as label-free nanothermometers

5. NGFR regulates stromal cell activation in germinal centers

8. A YAP/TAZ-TEAD signalling module links endothelial nutrient acquisition to angiogenic growth

9. CREBBP histone acetyltransferase domain mutations predict response to mTOR inhibition in relapsed/refractory follicular lymphoma.

10. Folliculin-interacting protein FNIP2 impacts on overweight and obesity through a polymorphism in a conserved 3′ untranslated region

11. Fatty acids homeostasis during fasting predicts protection from chemotherapy toxicity

15. Macrophages recycle phagocytosed bacteria to fuel immunometabolic responses

17. PI3K-C2β limits mTORC1 signaling and angiogenic growth

18. Pharmacological and genetic increases in liver NADPH levels ameliorate NASH progression in female mice

19. Oncogenic Rag GTPase signalling enhances B cell activation and drives follicular lymphoma sensitive to pharmacological inhibition of mTOR

20. Lack of p38 activation in T cells increases IL-35 production and protects against obesity by promoting thermogenesis

23. Phosphorylation of FAM134C by CK2 controls starvation-induced ER-phagy

26. Amino acid-insensitive mTORC1 regulation enables nutritional stress resilience in hematopoietic stem cells

28. Fatty acids homeostasis during fasting predicts protection from chemotherapy toxicity

29. Cyclin D3 drives inertial cell cycling in dark zone germinal center B cells

30. Nutrient-sensing mechanisms and pathways

35. Additional file 1 of Folliculin-interacting protein FNIP2 impacts on overweight and obesity through a polymorphism in a conserved 3′ untranslated region

36. Additional file 3 of Folliculin-interacting protein FNIP2 impacts on overweight and obesity through a polymorphism in a conserved 3′ untranslated region

39. From mouse genetics to targeting the Rag GTPase pathway

41. Corrigendum: mTORC1-dependent AMD1 regulation sustains polyamine metabolism in prostate cancer

42. Regulation of mTORC1 by the Rag GTPases is necessary for neonatal autophagy and survival

44. Limited survival and impaired hepatic fasting metabolism in mice with constitutive Rag GTPase signaling

45. mTORC1-dependent AMD1 regulation sustains polyamine metabolism in prostate cancer

46. Nutrient mTORC1 signaling underpins regulatory T cell control of immune tolerance

48. Cyclin D3 drives inertial cell cycling in dark zone germinal center B cells

49. Harnessing DNA for nanothermometry

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