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Publication : The TRPC1 Ca<sup>2+</sup>-permeable channel inhibits exercise-induced protection against high-fat diet-induced obesity and type II diabetes.

First Author  Krout D Year  2017
Journal  J Biol Chem Volume  292
Issue  50 Pages  20799-20807
PubMed ID  29074621 Mgi Jnum  J:255153
Mgi Id  MGI:6106780 Doi  10.1074/jbc.M117.809954
Citation  Krout D, et al. (2017) The TRPC1 Ca(2+)-permeable channel inhibits exercise-induced protection against high-fat diet-induced obesity and type II diabetes. J Biol Chem 292(50):20799-20807
abstractText  The transient receptor potential canonical channel-1 (TRPC1) is a Ca(2+)-permeable channel found in key metabolic organs and tissues, including the hypothalamus, adipose tissue, and skeletal muscle. Loss of TRPC1 may alter the regulation of cellular energy metabolism resulting in insulin resistance thereby leading to diabetes. Exercise reduces insulin resistance, but it is not known whether TRPC1 is involved in exercise-induced insulin sensitivity. The role of TRPC1 in adiposity and obesity-associated metabolic diseases has not yet been determined. Our results show that TRPC1 functions as a major Ca(2+) entry channel in adipocytes. We have also shown that fat mass and fasting glucose concentrations were lower in TRPC1 KO mice that were fed a high-fat (HF) (45% fat) diet and exercised as compared with WT mice fed a HF diet and exercised. Adipocyte numbers were decreased in both subcutaneous and visceral adipose tissue of TRPC1 KO mice fed a HF diet and exercised. Finally, autophagy markers were decreased and apoptosis markers increased in TRPC1 KO mice fed a HF diet and exercised. Overall, these findings suggest that TRPC1 plays an important role in the regulation of adiposity via autophagy and apoptosis and that TRPC1 inhibits the positive effect of exercise on type II diabetes risk under a HF diet-induced obesity environment.
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