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Preventing the calorie restriction-induced increase in insulin-stimulated Akt2 phosphorylation eliminates calorie restriction’s effect on glucose uptake in skeletal muscle

机译:防止胰岛素刺激的磷酸化的akt2消除限制热量摄入的葡萄糖效应限制热量摄入引起的摄取增加骨骼肌

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摘要

Calorie restriction (CR; ~60% of ad libitum, AL, consumption) improves insulin-stimulated glucose uptake in skeletal muscle. The precise cellular mechanism for this healthful outcome is unknown, but it is accompanied by enhanced insulin-stimulated activation of Akt. Previous research using Akt2-null mice demonstrated that Akt2 is essential for the full CR-effect on insulin-stimulated glucose uptake by muscle. However, because Akt2-null mice were completely deficient in Akt2 in every cell throughout life, it would be valuable to assess the efficacy of transient, muscle-specific Akt inhibition for attenuation of CR-effects on glucose uptake. Accordingly, we used a selective Akt inhibitor (MK-2206) to eliminate the CR-induced elevation in insulin-stimulated Akt2 phosphorylation and determined the effects on Akt substrates and glucose uptake. We incubated isolated epitrochlearis muscles from 9-month-old AL and CR (~60–65% of AL intake for 6 months) rats with or without MK-2206 and measured insulin-stimulated (1.2 nM) glucose uptake and phosphorylation of the insulin receptor (Tyr1162/1163), pan-Akt (Thr308 and Ser473), Akt2 (Thr308 and Ser473), AS160/TBC1D4 (Thr642), and Filamin C (Ser2213). Incubation of isolated skeletal muscles with a dose of a selective Akt inhibitor that eliminated the CR-induced increases in Akt2 phosphorylation prevented CR’s effects on insulin-stimulated glucose uptake, pAS160Thr642 and pFilamin CSer2213 without altering pIRTyr1162/1163. These data provide compelling new evidence linking the CR-induced increase in insulin-stimulated Akt2 phosphorylation to CR’s effects on insulin-mediated phosphorylation of Akt substrates and glucose uptake in skeletal muscle.
机译:热量限制(CR;约60%的自由摄入量,AL)可改善胰岛素刺激的骨骼肌葡萄糖摄取。这种健康结局的确切细胞机制尚不清楚,但伴随胰岛素刺激的Akt激活增强。以前使用Akt2无效小鼠的研究表明,Akt2对于胰岛素对肌肉刺激的葡萄糖摄取的完全CR效应至关重要。但是,由于空缺Akt2的小鼠在整个生命中的每个细胞中都完全缺乏Akt2,因此评估短暂的,肌肉特异性的Akt抑制作用对降低CR对葡萄糖摄取的影响的功效将是有价值的。因此,我们使用选择性的Akt抑制剂(MK-2206)消除了CR诱导的胰岛素刺激的Akt2磷酸化升高,并确定了对Akt底物和葡萄糖摄取的影响。我们在有或没有MK-2206的9个月大的AL和CR(约占60%的AL摄入量的6–65%)的大鼠中孵育离体棘上肌,并测量了胰岛素刺激的(1.2 nM)葡萄糖摄取和胰岛素的磷酸化受体(Tyr1162 / 1163),泛Akt(Thr308和Ser473),Akt2(Thr308和Ser473),AS160 / TBC1D4(Thr642)和Filamin C(Ser2213)。服用一定剂量的选择性Akt抑制剂(可消除CR诱导的Akt2磷酸化增加),对孤立的骨骼肌进行孵育,可防止CR对胰岛素刺激的葡萄糖摄取,pAS160 Thr642 和pFilamin C Ser2213 < / sup>,而不会更改pIR Tyr1162 / 1163 。这些数据提供了令人信服的新证据,将CR诱导的胰岛素刺激的Akt2磷酸化增加与CR对胰岛素介导的Akt底物的磷酸化和骨骼肌葡萄糖摄取的影响联系起来。

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