Key result
Old and myopathic muscles show up to ~70% lower sMyBP-C phosphorylation versus controls.
Observational
Reduced sMyBP-C phosphorylation may contribute to weakness in aging and DA-1; leaves open its value as biomarker or target.
Myosin Binding Protein-C slow (sMyBP-C), encoded by MYBPC1, comprises a family of regulatory proteins of skeletal muscles that are phosphorylated by PKA and PKC. MYBPC1 missense mutations are linked to the development of Distal Arthrogryposis-1 (DA-1). Although structure-function details for this myopathy are evolving, function is undoubtedly driven by sequence variations and post-translational modifications in sMyBP-C. Herein, we examined the phosphorylation profile of sMyBP-C in mouse and human fast-twitch skeletal muscles. We used Flexor Digitorum Brevis (FDB) isolated from young (~2-months old) and old (~14-months old) wild type and mdx mice, and human Abductor Hallucis (AH) and gastrocnemious muscles carrying the DA-1 mutations. Our results indicate both constitutive and differential phosphorylation of sMyBP-C in aged and diseased muscles. We report a 7-35% reduction in the phosphorylation levels of select sites in old wild type and young or old mdx FDB mouse muscles, compared to young wild type tissue. Similarly, we observe a 30-70% decrease in the phosphorylation levels of all PKA and PKC phospho-sites in the DA-1 AH, but not gastrocnemius, muscle. Overall, our studies show that the phosphorylation pattern of sMyBP-C is differentially regulated in response to age and disease, suggesting that phosphorylation plays important roles in these processes.
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Ackermann et al. (2015) conducted an observational in Duchenne Dystrophy and Distal Arthrogryposis-1. Age and disease state (mdx, DA-1 mutations) vs. Young wild type tissue was evaluated on Phosphorylation profile of sMyBP-C. Phosphorylation levels of sMyBP-C were reduced by 7-35% in old wild type and mdx mouse muscles, and by 30-70% in human DA-1 abductor hallucis muscles compared to controls.
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