Exercise ameliorates insulin resistance and improves ASK1-mediated insulin signalling in obese rats

J Cell Mol Med. 2021 Dec;25(23):10930-10938. doi: 10.1111/jcmm.16994. Epub 2021 Nov 3.

Abstract

Increasing evidence reveals that physical exercise is an efficient therapeutical approach in the treatment of insulin resistance (IR) and related metabolic diseases. However, the potential beneficial effects of exercise on insulin resistance and its underlying mechanisms remain unclear. Recent findings elucidated the negative role of ASK1 in repressing the glucose uptake through JNK1-IRS1-Akt signalling in liver. Thus, a detailed investigation of the effect of ASK1-mediated insulin signalling on exercise-mediated improvement of insulin sensitivity and its underlying mechanism was implemented in this study. Using a high-fat diet-induced IR rat model of chronic or acute swimming exercise training, we here showed that body weight and visceral fat mass were significantly reduced after chronic exercise. Moreover, chronic exercise reduced serum FFAs levels and hepatic triglyceride content. Both chronic and acute exercise promoted glucose tolerance and insulin sensitivity. Meanwhile, both chronic and acute exercise decreased ASK1 phosphorylation and improved JNK1-IRS1-Akt signalling. Furthermore, exercise training decreased CFLAR, CREG and TRAF1 protein levels in liver of obese rats, which are positive regulator of ASK1 activity. These results suggested that swimming exercise demonstrated to be an effective ameliorator of IR through the regulation of ASK1-mediated insulin signalling and therefore, could present a prospective therapeutic mean towards the treatment of IR and several metabolic diseases based on IR, containing NAFLD and type Ⅱ diabetes.

Keywords: ASK1; exercise; insulin resistance; insulin signalling transduction.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Animals
  • Diabetes Mellitus, Type 2 / metabolism
  • Diet, High-Fat / adverse effects
  • Insulin / metabolism*
  • Insulin Resistance / physiology*
  • Intra-Abdominal Fat / metabolism
  • Liver / metabolism
  • MAP Kinase Kinase Kinase 5 / metabolism*
  • Male
  • Non-alcoholic Fatty Liver Disease / metabolism
  • Obesity / metabolism*
  • Phosphorylation / physiology
  • Physical Conditioning, Animal / physiology*
  • Rats
  • Rats, Sprague-Dawley
  • Signal Transduction / physiology
  • Triglycerides / metabolism

Substances

  • Insulin
  • Triglycerides
  • MAP Kinase Kinase Kinase 5