Zhou Shutong, Yu Dongni, Ning Shangyong, Zhang Heli, Jiang Lei, He Lei, Li Miao, Sun Mingxiao
Peking University Fifth School of Clinical Medicine, Beijing Hospital, Beijing, China.
Cell Physiol Biochem. 2015;35(6):2135-48. doi: 10.1159/000374019. Epub 2015 Apr 7.
The aim of this study was to clarify the relationship among Rac1 expression and activation, oxidative stress and β cell dysfunction in obesity.
In vivo, serum levels of glucose, insulin, oxidative stress markers and Rac1 expression were compared between ob/ob mice and C57BL/6J controls. Then, these variables were rechecked after the administration of the specific Rac1 inhibitor-NSC23766 in ob/ob mice. In vitro, NIT-1 β cells were cultured in a hyperglycemic and/or hyperlipidemic state with or without NSC23766, and the differences of Rac1 expression and translocation, NADPH oxidase(Nox) enzyme activity, reactive oxygen species (ROS) and insulin mRNA were observed.
ob/ob mice displayed abnormal glycometabolism, oxidative stress and excessive expression of Rac1 in the pancreas. NSC23766 injection inhibited the expression of Rac1 in the pancreas, along with amelioration of oxidative stress and glycometabolism in obese mice. Under hyperglycemic and/or hyperlipidemic conditions, Rac1 translocated to the cellular membrane, induced activation of the NADPH oxidase enzyme and oxidative stress, and simultaneously reduced the insulin mRNA expression in NIT-1 β cells. Inhibiting Rac1 activity could alleviate oxidative stress and meliorate the decline of insulin mRNA in β cells.
Rac1 might contribute to oxidative stress systemically and locally in the pancreas in obesity. The excessive activation and expression of Rac1 in obesity were associated with β cell dysfunction through ROS production.
本研究旨在阐明肥胖状态下Rac1表达与激活、氧化应激和β细胞功能障碍之间的关系。
在体内,比较ob/ob小鼠和C57BL/6J对照小鼠的血糖、胰岛素、氧化应激标志物水平及Rac1表达。然后,在ob/ob小鼠中给予特异性Rac1抑制剂NSC23766后再次检查这些变量。在体外,将NIT-1β细胞在高血糖和/或高血脂状态下培养,添加或不添加NSC23766,观察Rac1表达与转位、NADPH氧化酶(Nox)活性、活性氧(ROS)及胰岛素mRNA的差异。
ob/ob小鼠表现出糖代谢异常、氧化应激及胰腺中Rac1过度表达。注射NSC23766可抑制胰腺中Rac1的表达,同时改善肥胖小鼠的氧化应激和糖代谢。在高血糖和/或高血脂条件下,Rac1转位至细胞膜,诱导NADPH氧化酶激活和氧化应激,同时降低NIT-1β细胞中胰岛素mRNA的表达。抑制Rac1活性可减轻氧化应激,改善β细胞中胰岛素mRNA的下降。
Rac1可能在肥胖状态下对胰腺系统和局部的氧化应激产生影响。肥胖中Rac1的过度激活和表达通过产生活性氧与β细胞功能障碍相关。