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April 30, 2004Journal of Biological Chemistry180 citationsOpen Access

Musclin, a Novel Skeletal Muscle-derived Secretory Factor

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HNHitoshi NishizawaMMMorihiro MatsudaYYYukio Yamada

Key Points

  • This research aims to identify and characterize musclin, a secretory factor produced by skeletal muscle, and its role in glucose metabolism. The study examines how musclin expression is influenced by nutritional states and hormonal signals.
  • Signal sequence trap used to identify musclin cDNA from mouse skeletal muscle.
  • Muscle tissues from mice analyzed for musclin mRNA expression under various conditions including fasting and re-feeding.
  • C2C12 myocyte studies evaluated insulin and other hormonal effects on musclin levels.
  • Musclin cDNA encodes a 130 amino acid protein with homology to the natriuretic peptide family.
  • Recombinant musclin reduces insulin-mediated glucose uptake and glycogen synthesis in C2C12 myocytes.
  • Increased musclin expression is observed in the muscles of obese insulin-resistant mice.

Abstract

Skeletal muscle is involved in the homeostasis of glucose and lipid metabolism. We hypothesized that the skeletal muscle produces and secretes bioactive factor(s), similar to adipocytokines secreted by fat tissue. Here, we report the identification of a novel secretory factor, musclin, by signal sequence trap of mouse skeletal muscle cDNAs. Musclin cDNA encoded 130 amino acids, including NH(2)-terminal 30-amino acid signal sequence. Musclin protein contained a region homologous to natriuretic peptide family, and KKKR, a putative serine protease cleavage site, similar to the natriuretic peptide family. Full-length musclin protein and KKKR-dependent cleaved form were secreted in media of musclin cDNA-transfected mammalian cell cultures. Musclin mRNA was expressed almost exclusively in the skeletal muscle of mice. Musclin mRNA levels in skeletal muscle were markedly low in fasted, increased upon re-feeding, and were low in streptozotocin-treated insulin-deficient mice. Musclin mRNA expression was induced at late stage in the differentiation of C2C12 myocytes. In myocytes, insulin increased, while epinephrine, isoproterenol, and forskolin reduced musclin mRNA, all of which are known to increase the cellular content of cyclic AMP, a counter-regulator to insulin. Pathologically, overexpression of musclin mRNA was noted in the muscles of obese insulin-resistant KKAy mice. Functionally, recombinant musclin significantly attenuated insulin-stimulated glucose uptake and glycogen synthesis in myocytes. In conclusion, we identified musclin, a novel skeletal muscle-derived secretory factor. Musclin expression level is tightly regulated by nutritional changes and its physiological role could be linked to glucose metabolism.

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Cite This Study

Nishizawa et al. (2004) studied this question.

synapsesocial.com/papers/6a1ac3614dcca2706385b757https://doi.org/10.1074/jbc.c400066200
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