Literature DB >> 19500665

Attenuation of oxidant-induced muscle insulin resistance and p38 MAPK by exercise training.

Kanokwan Vichaiwong1, Erik J Henriksen, Chaivat Toskulkao, Mujalin Prasannarong, Tepmanas Bupha-Intr, Vitoon Saengsirisuwan.   

Abstract

We have recently shown that direct exposure to an oxidant stress induces resistance to insulin in glucose transport activity in intact rat skeletal muscle. In this study, we evaluated the effectiveness of prior exercise training in attenuating oxidative stress-induced insulin resistance. Male Sprague-Dawley rats either remained sedentary or underwent a treadmill-running regimen for 6 weeks. Isolated soleus muscles were incubated in the absence or presence of hydrogen peroxide (H(2)O(2)) (50-70 microM) with or without insulin for 2 h. In the sedentary animals, H(2)O(2) significantly inhibited insulin action on glucose transport activity and phosphorylation of Akt (Ser(473)), by 28 and 24%, respectively, and substantially activated the phosphorylation levels of p38 MAPK (Thr(180)/Tyr(182)) by 43% and SAPK/JNK (Thr(183)/Tyr(185)) by 111%. Interestingly, the inhibitory effects of H(2)O(2) on insulin-stimulated glucose transport and Akt (Ser(473)) phosphorylation were attenuated by 43 and 75% in exercise-trained muscles. Additionally, the phosphorylation level of p38 MAPK (Thr(180)/Tyr(182)) triggered by oxidative stress was reduced by 59% in the exercise-trained muscle. We have demonstrated for the first time in mammalian skeletal muscle that endurance exercise training can partially protect against glucose transport resistance to insulin induced by oxidative stress, and this benefit of exercise training is at least in part mediated through the insulin signaling pathway and stress-activated signaling elements.

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Year:  2009        PMID: 19500665     DOI: 10.1016/j.freeradbiomed.2009.05.036

Source DB:  PubMed          Journal:  Free Radic Biol Med        ISSN: 0891-5849            Impact factor:   7.376


  5 in total

1.  MAPK, androgen, and glucocorticoid receptor phosphorylation following high-frequency resistance exercise non-functional overreaching.

Authors:  Justin X Nicoll; Andrew C Fry; Eric M Mosier; Luke A Olsen; Stephanie A Sontag
Journal:  Eur J Appl Physiol       Date:  2019-08-16       Impact factor: 3.078

2.  Direct inhibition by angiotensin II of insulin-dependent glucose transport activity in mammalian skeletal muscle involves a ROS-dependent mechanism.

Authors:  Maggie K Diamond-Stanic; Erik J Henriksen
Journal:  Arch Physiol Biochem       Date:  2010-05       Impact factor: 4.076

Review 3.  Oxidative stress and the etiology of insulin resistance and type 2 diabetes.

Authors:  Erik J Henriksen; Maggie K Diamond-Stanic; Elizabeth M Marchionne
Journal:  Free Radic Biol Med       Date:  2010-12-13       Impact factor: 7.376

4.  Critical role of the transient activation of p38 MAPK in the etiology of skeletal muscle insulin resistance induced by low-level in vitro oxidant stress.

Authors:  Maggie K Diamond-Stanic; Elizabeth M Marchionne; Mary K Teachey; David E Durazo; John S Kim; Erik J Henriksen
Journal:  Biochem Biophys Res Commun       Date:  2011-01-15       Impact factor: 3.575

5.  Exercise training reduces insulin resistance in postmyocardial infarction rats.

Authors:  Youhua Wang; Zhenjun Tian; Weijin Zang; Hongke Jiang; Youyou Li; Shengpeng Wang; Shengfeng Chen
Journal:  Physiol Rep       Date:  2015-04
  5 in total

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