Rho-kinase is differentially expressed in the adipose tissue of rodent and human in response to aging, sex, and acute exercise

脂肪组织 内分泌学 内科学 褐色脂肪组织 下调和上调 白色脂肪组织 生物 衰老 脂肪因子 医学 肥胖 胰岛素抵抗 生物化学 基因
作者
Vitor Rosetto Muñoz,Renan Fudoli Lins Vieira,Carlos K. Katashima,Rafael Calais Gaspar,Marsel Lino,Joice Cristina dos Santos Trombeta,Renata Garbellini Duft,Ana Paula Azevêdo Macêdo,Adelino Sánchez Ramos da Silva,Eduardo Rochete Ropelle,Leandro Pereira de Moura,Dennys Esper Cintra,Mara Patrícia Traina Chacon-Mikahil,Cláudia Regina Cavaglieri,José Rodrigo Pauli
出处
期刊:The Journals of Gerontology [Oxford University Press]
标识
DOI:10.1093/gerona/glae001
摘要

Abstract White adipose tissue (WAT) controls energy storage, expenditure and endocrine function. Rho-kinase (ROCK) is related to impaired thermogenesis, downregulation of preadipocyte differentiation, and adipokine production. Furthermore, WAT ROCK responds to metabolic stress from high-fat diets or diabetes. However, ROCK distribution in adipose depots and its response to aging and sex remain unclear. Thus, we aim to investigate ROCK function in adipose tissue of rodent and human in response to aging and sex. We observed specific differences in the ROCK1/2 distribution in inguinal WAT (ingWAT), perigonadal WAT (pgWAT) and brown adipose tissue (BAT) of male and female rodents. However, ROCK2 expression was lower in female ingWAT compared to males, a fact that was not observed in the other depots. In the pgWAT and ingWAT of male and female rodents, ROCK activity increased during development. Moreover, middle-aged female rodents and humans showed a downregulation in ROCK activity after acute physical exercise. Interestingly, ROCK levels were associated with several inflammatory markers both in rats and humans WAT (Nfkb1, Tnf, Il1b, Il6, Mcp1). Induction of cell senescence by etoposide elevates ROCK activity in human preadipocytes; however, silencing ROCK1/2 demonstrates improvement in the inflammatory and cell senescence state. Using public databases, several pathways were strongly associated with ROCK modulation in WAT. In summary, WAT ROCK increases with development in association with inflammatory markers. Further, ROCK activity was atteanuated by acute physical exercise, implicating it as a possible therapeutic target for metabolism improvement mediated by adipose tissue inflammatory state changes.

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