Ji Heun Lee, Morgan E Vorwald, Melissa Roths, Joshua T Selsby, Rudy J Valentine
Duchenne muscular dystrophy (DMD) is characterized by chronic skeletal muscle injury and degeneration. We discovered activation of protein kinase R (PKR; EIF2AK2), a regulator of the integrated stress response, in dystrophic muscle; however, its role in DMD remains unknown. We hypothesized that the PKR inhibitor imoxin (IMX) would improve muscle force and attenuate fibrosis, inflammatory signaling, and ER stress in diaphragms from mdx mice. C57 and mdx mice were treated with vehicle or IMX for ~24 wks (0.5 mg/kg, subcutaneous, 5 times/wk). Specific force was decreased (p < 0.001), and dynamic passive force was increased (p = 0.001) by disease, but there were no IMX effects. Disease-increased fibrotic area was decreased by IMX (p = 0.038); however, IMX failed to reduce fibronectin, collagen, or TGF-β1 signaling proteins. PKR and phosphorylated (p)PKR (thr446) were increased in mdx (p < 0.001) and maintained despite IMX treatment. Similarly, PKR regulators (total PACT, pPACT (ser18), TRBP, and PP1α), and PKR substrates (total eIF2α and peIF2α (ser51)) were also increased with disease (p < 0.001), but unaffected by IMX. Likewise, IMX did not attenuate disease-mediated elevations in inflammatory signaling and ER stress markers. Overall, the dose of IMX was insufficient to attenuate PKR activation and failed to improve muscle function or prevent pathology in dystrophic skeletal muscle.