Autophagy signaling in hypertrophied muscles of diabetic and control rats

Author:

Scervino Maria V. M.12ORCID,Fortes Marco A. S.23,Vitzel Kaio F.4,de Souza Diego R.15,Murata Gilson M.2,Santana Giovanna O.1,da Silva Eliane B.1,Levada‐Pires Adriana C.1,Kuwabara Wilson M. T.2,Loureiro Tatiana C. A.2,Curi Rui12

Affiliation:

1. Instituto de Ciências da Atividade Física e Esporte (ICAFE) Universidade Cruzeiro do Sul São Paulo Brazil

2. Departmento de Fisiologia e Biofísica, Instituto de Ciências Biomédicas Universidade de São Paulo Brazil

3. Departmento de Nutrição Centro Universitário Avantis Balneário Camburiú Brazil

4. School of Health Sciences, College of Health Massey University Auckland New Zealand

5. Departamento de Projetos de Pesquisa e Ensino Escola de Educação Física da Polícia Militar do Estado de São Paulo Brazil

Abstract

Autophagy plays a vital role in cell homeostasis by eliminating nonfunctional components and promoting cell survival. Here, we examined the levels of autophagy signaling proteins after 7 days of overload hypertrophy in the extensor digitorum longus (EDL) and soleus muscles of control and diabetic rats. We compared control and 3‐day streptozotocin‐induced diabetic rats, an experimental model for type 1 diabetes mellitus (T1DM). EDL muscles showed increased levels of basal autophagy signaling proteins. The diabetic state did not affect the extent of overload‐induced hypertrophy or the levels of autophagy signaling proteins (p‐ULK1, Beclin‐1, Atg5, Atg12‐5, Atg7, Atg3, LC3‐I and II, and p62) in either muscle. The p‐ULK‐1, Beclin‐1, and p62 protein expression levels were higher in the EDL muscle than in the soleus before the hypertrophic stimulus. On the contrary, the soleus muscle exhibited increased autophagic signaling after overload‐induced hypertrophy, with increases in Beclin‐1, Atg5, Atg12‐5, Atg7, Atg3, and LC3‐I expression in the control and diabetic groups, in addition to p‐ULK‐1 in the control groups. After hypertrophy, Beclin‐1 and Atg5 levels increased in the EDL muscle of both groups, while p‐ULK1 and LC3‐I increased in the control group. In conclusion, the baseline EDL muscle exhibited higher autophagy than the soleus muscle. Although TDM1 promotes skeletal muscle mass loss and strength reduction, it did not significantly alter the extent of overload‐induced hypertrophy and autophagy signaling proteins in EDL and soleus muscles, with the two groups exhibiting different patterns of autophagy activation.

Funder

Conselho Nacional de Desenvolvimento Científico e Tecnológico

Coordenação de Aperfeiçoamento de Pessoal de Nível Superior

Fundação de Amparo à Pesquisa do Estado de São Paulo

Publisher

Wiley

Subject

General Biochemistry, Genetics and Molecular Biology

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