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首页> 外文期刊>Physiological Research >Role of Exercise-Induced Calmodulin Protein Kinase (CaMK)II Activation in the Regulation of Omega-6 Fatty Acids and Lipid Metabolism Genes in Rat Skeletal Muscle
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Role of Exercise-Induced Calmodulin Protein Kinase (CaMK)II Activation in the Regulation of Omega-6 Fatty Acids and Lipid Metabolism Genes in Rat Skeletal Muscle

机译:运动诱导的钙调蛋白蛋白激酶(CAMK)II活化在大鼠骨骼肌中调节ω-6脂肪酸和脂质代谢基因的作用

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Activation of calmodulin dependent protein kinase (CaMK) II by exercise is beneficial in controlling membrane lipids associated with type 2 diabetes and obesity. Regulation of lipid metabolism is crucial in the improvement of type 2 diabetes and obesity associated symptoms. The role of CaMKII in membrane associated lipid metabolism was the focus of this study. Five to six weeks old male Wistar rats were used in this study. GCxGC-TOFMS technique was used to determine the levels of polyunsaturated fatty acids (linoleic acid, arachidonic acid and 11,14-eicosadienoic acid). Carnitine palmitoyltransferase (Cpt-1) and acetyl-CoA carboxylase (Acc-1) genes expression were assessed using quantitative real time PCR (qPCR). From the results, CaMKII activation by exercise increased the levels of arachidonic acid and 11,14-eicosadienoic acid while a decrease in the level of linolenic acid was observed in the skeletal muscle. The results indicated that exercise-induced CaMKII activation increased CPT-1 expression and decreased ACC-1 expression in rat skeletal muscle. All the observed increases with activation of CaMKII by exercise were aborted when KN93, an inhibitor of CaMKII was injected in exercising rats. This study demonstrated that CaMKII activation by exercise regulated lipid metabolism. This study suggests that CaMKII can be a vital target of therapeutic approach in the management of diseases such as type 2 diabetes and obesity that have increased to epidemic proportions recently.
机译:通过运动的钙调蛋白依赖性蛋白激酶(CAMK)II的激活是有益于控制与2型糖尿病和肥胖相关的膜脂质。对脂质代谢的调节对于改善2型糖尿病和肥胖相关症状至关重要。 Camkii在膜相关脂质代谢中的作用是本研究的重点。本研究使用了五到六周的雄性Wistar大鼠。 GCXGC-TOFMS技术用于确定多不饱和脂肪酸(亚油酸,花生酸和11,14-己二烯酸)的水平。使用定量实时PCR(QPCR)评估肉氨基棕榈酰棕榈酰转移酶(CPT-1)和乙酰-COA羧化酶(ACC-1)基因表达。从结果中,通过运动的激活来激活花生素酸和11,14-己二烯酸的水平,同时在骨骼肌中观察到亚麻酸水平的降低。结果表明,运动诱导的CAMKI激活增加了CPT-1表达和大鼠骨骼肌中的ACC-1表达降低。当KN93时,通过运动激活CAMKII的所有观察到的增加时,在携带大鼠的情况下注射CAMKII的抑制剂。本研究表明,通过运动调节脂质代谢激活Camkii激活。本研究表明,Camkii可以是治疗方法在疾病中的治疗方法的重要目标,例如患有2型糖尿病和肥胖症,这些糖尿病患者最近增加到流行性比例。

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