4.7 Article

Angiotensin (1-7) Decreases Myostatin-Induced NF-κB Signaling and Skeletal Muscle Atrophy

期刊

出版社

MDPI
DOI: 10.3390/ijms21031167

关键词

RAS; Angiotensin-(1-7); muscle atrophy; NF-kappa B signaling; Akt/PKB

资金

  1. National Fund for Science and Technological Development (FONDECYT) [1161646, 1161288]
  2. Millennium Institute on Immunology and Immunotherapy [P09-016-F]
  3. Programa de Cooperacion Cientifica ECOS-CONICYT [C16S02]
  4. BASAL Grant CEDENNA [FB0807]
  5. CONICYT [21161353]
  6. Iniciativa Cientifica Milenio of the Ministry of Economy, Development and Tourism (Chile)

向作者/读者索取更多资源

Myostatin is a myokine that regulates muscle function and mass, producing muscle atrophy. Myostatin induces the degradation of myofibrillar proteins, such as myosin heavy chain or troponin. The main pathway that mediates protein degradation during muscle atrophy is the ubiquitin proteasome system, by increasing the expression of atrogin-1 and MuRF-1. In addition, myostatin activates the NF-kappa B signaling pathway. Renin-angiotensin system (RAS) also regulates muscle mass. Angiotensin (1-7) (Ang-(1-7)) has anti-atrophic properties in skeletal muscle. In this paper, we evaluated the effect of Ang-(1-7) on muscle atrophy and signaling induced by myostatin. The results show that Ang-(1-7) prevented the decrease of the myotube diameter and myofibrillar protein levels induced by myostatin. Ang-(1-7) also abolished the increase of myostatin-induced reactive oxygen species production, atrogin-1, MuRF-1, and TNF-beta gene expressions and NF-kappa B signaling activation. Ang-(1-7) inhibited the activity mediated by myostatin through Mas receptor, as is demonstrated by the loss of all Ang-(1-7)-induced effects when the Mas receptor antagonist A779 was used. Our results show that the effects of Ang-(1-7) on the myostatin-dependent muscle atrophy and signaling are blocked by MK-2206, an inhibitor of Akt/PKB. Together, these data indicate that Ang-(1-7) inhibited muscle atrophy and signaling induced by myostatin through a mechanism dependent on Mas receptor and Akt/PKB.

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