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1. Pathogenic hypothalamic extracellular matrix promotes metabolic disease

6. Proteome-wide systems genetics identifies UFMylation as a regulator of skeletal muscle function

7. Decorin, an exercise-induced secretory protein, is associated with improved prognosis in breast cancer patients but does not mediate anti-tumorigenic tissue crosstalk in mice

8. Decoupling FcRn and tumor contributions to elevated immune checkpoint inhibitor clearance in cancer cachexia

10. Phosphoproteomics of three exercise modalities identifies canonical signaling and C18ORF25 as an AMPK substrate regulating skeletal muscle function

12. Loss of the long non-coding RNA OIP5-AS1 exacerbates heart failure in a sex-specific manner

13. Zfp697 is an RNA-binding protein that regulates skeletal muscle inflammation and remodeling.

14. Dystrophin S3059 phosphorylation partially attenuates denervation atrophy in mouse tibialis anterior muscles.

15. A gene therapy targeting medium-chain acyl-CoA dehydrogenase (MCAD) did not protect against diabetes-induced cardiac pathology

17. The Rho GTPase Rac1 mediates exercise training adaptations

19. Extracellular Vesicles Provide a Means for Tissue Crosstalk during Exercise

20. Treatment of type 2 diabetes with the designer cytokine IC7Fc

21. Functional screening in human cardiac organoids reveals a metabolic mechanism for cardiomyocyte cell cycle arrest

23. Pantothenate Kinase 4 controls efficient skeletal muscle energy substrate metabolism via acetyl-CoA

24. The Rho guanine dissociation inhibitor α inhibits skeletal muscle Rac1 activity and insulin action

26. Zfp697 is an RNA-binding protein that regulates skeletal muscle inflammation and regeneration

27. Statins activate the NLRP3 inflammasome and inhibit the Hippo pathway to promote myopathy

38. Glucose-6-phosphate dehydrogenase contributes to the regulation of glucose uptake in skeletal muscle

40. Decoupling Fcrn and Tumor Contributions to Elevated Immune Checkpoint Inhibitor Clearance in Cancer Cachexia

42. Liver-secreted Hexosaminidase A regulates insulin-like growth factor signalling and glucose transport in skeletal muscle

43. Proteome-wide systems genetics identifies UFMylation as a regulator of skeletal muscle function

44. The Rho guanine dissociation inhibitor α inhibits skeletal muscle Rac1 activity and insulin action

45. Author response: Proteome-wide systems genetics identifies UFMylation as a regulator of skeletal muscle function

46. Class IIa HDACs reprogram mitochondrial metabolism to inhibit apoptosis and ferroptosis in response to lipotoxicity

49. Liver-Secreted Hexosaminidase A Regulates Insulin-Like Growth Factor Signaling and Glucose Transport in Skeletal Muscle.

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