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Oxytocin induces anti-catabolic and anabolic effects on protein metabolism in the female rat oxidative skeletal muscle.
Costa, Daniely Messias; Cruz-Filho, João da; Vasconcelos, Alan Bruno Silva; Gomes-Santos, João Victor; Reis, Luis Carlos; de Lucca, Waldecy; Camargo, Enilton Aparecido; Lauton-Santos, Sandra; Zanon, Neusa Maria; Kettelhut, Ísis do Carmo; Navegantes, Luiz Carlos; Mecawi, André de Souza; Badauê-Passos, Daniel; Lustrino, Danilo.
Afiliación
  • Costa DM; Graduate Program in Physiological Sciences, Federal University of Sergipe, São Cristóvão, SE, Brazil; Department of Physiology, Center for Biological and Health Sciences, Federal University of Sergipe, São Cristóvão, SE, Brazil.
  • Cruz-Filho JD; Department of Physiology, Center for Biological and Health Sciences, Federal University of Sergipe, São Cristóvão, SE, Brazil.
  • Vasconcelos ABS; Graduate Program in Physiological Sciences, Federal University of Sergipe, São Cristóvão, SE, Brazil; Department of Physiology, Center for Biological and Health Sciences, Federal University of Sergipe, São Cristóvão, SE, Brazil.
  • Gomes-Santos JV; Department of Physiology, Center for Biological and Health Sciences, Federal University of Sergipe, São Cristóvão, SE, Brazil.
  • Reis LC; Department of Physiological Sciences, Center for Biological and Health Sciences, Rural Federal University of Rio de Janeiro, Seropédica, RJ, Brazil.
  • de Lucca W; Department of Morphology, Center for Biological and Health Sciences, Federal University of Sergipe, São Cristóvão, SE, Brazil.
  • Camargo EA; Graduate Program in Physiological Sciences, Federal University of Sergipe, São Cristóvão, SE, Brazil; Department of Physiology, Center for Biological and Health Sciences, Federal University of Sergipe, São Cristóvão, SE, Brazil.
  • Lauton-Santos S; Graduate Program in Physiological Sciences, Federal University of Sergipe, São Cristóvão, SE, Brazil; Department of Physiology, Center for Biological and Health Sciences, Federal University of Sergipe, São Cristóvão, SE, Brazil.
  • Zanon NM; Department of Physiology and Biochemistry & Immunology, Ribeirão Preto Medical School, São Paulo University, Ribeirão Preto, SP, Brazil.
  • Kettelhut ÍDC; Department of Physiology and Biochemistry & Immunology, Ribeirão Preto Medical School, São Paulo University, Ribeirão Preto, SP, Brazil.
  • Navegantes LC; Department of Physiology and Biochemistry & Immunology, Ribeirão Preto Medical School, São Paulo University, Ribeirão Preto, SP, Brazil.
  • Mecawi AS; Department of Biophysics, São Paulo Medical School, Federal University of São Paulo, São Paulo, SP, Brazil.
  • Badauê-Passos D; Department of Physiology, Center for Biological and Health Sciences, Federal University of Sergipe, São Cristóvão, SE, Brazil.
  • Lustrino D; Graduate Program in Physiological Sciences, Federal University of Sergipe, São Cristóvão, SE, Brazil; Department of Physiology, Center for Biological and Health Sciences, Federal University of Sergipe, São Cristóvão, SE, Brazil. Electronic address: lustrino@academico.ufs.br.
Life Sci ; 279: 119665, 2021 Aug 15.
Article en En | MEDLINE | ID: mdl-34087281
ABSTRACT

AIMS:

Although it is well established that skeletal muscle contains oxytocin (OT) receptors and OT-knockout mice show premature development of sarcopenia, the role of OT in controlling skeletal muscle mass is still unknown. Therefore, the present work aimed to determine OT's effects on skeletal muscle protein metabolism. MAIN

METHODS:

Total proteolysis, proteolytic system activities and protein synthesis were assessed in isolated soleus muscle from prepubertal female rats. Through in vivo experiments, rats received 3-day OT treatment (3UI.kg-1.day-1, i.p.) or saline, and muscles were harvested for mass-gain assessment. KEY

FINDINGS:

In vitro OT receptor stimulation reduced total proteolysis, specifically through attenuation of the lysosomal and proteasomal proteolytic systems, and in parallel activated the Akt/FoxO1 signaling and suppressed atrogenes (e.g., MuRF-1 and atrogin-1) expression induced by motor denervation. On the other hand, the protein synthesis was not altered by in vitro treatment with the OT receptor-selective agonist. Although short-term OT treatment did not change the atrogene mRNA levels, the protein synthesis was stimulated, resulting in soleus mass gain, probably through an indirect effect.

SIGNIFICANCE:

Taken together, these data show for the first time that OT directly inhibits the proteolytic activities of the lysosomal and proteasomal systems in rat oxidative skeletal muscle by suppressing atrogene expression via stimulation of Akt/FoxO signaling. Moreover, the data obtained from in vivo experiments suggest OT's ability to control rat oxidative skeletal muscle mass.
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Texto completo: 1 Base de datos: MEDLINE Asunto principal: Biosíntesis de Proteínas / Oxitocina / Músculo Esquelético / Proteolisis / Anabolizantes / Lisosomas Límite: Animals Idioma: En Revista: Life Sci Año: 2021 Tipo del documento: Article País de afiliación: Brasil

Texto completo: 1 Base de datos: MEDLINE Asunto principal: Biosíntesis de Proteínas / Oxitocina / Músculo Esquelético / Proteolisis / Anabolizantes / Lisosomas Límite: Animals Idioma: En Revista: Life Sci Año: 2021 Tipo del documento: Article País de afiliación: Brasil