Your browser doesn't support javascript.
loading
Exercise-induced changes of MCT1 in cardiac and skeletal muscles of diabetic rats induced by high-fat diet and STZ
Nikooie, Rohollah; Aveseh, Malihe; Rajabi, Hamid; Gharakhanlu, Reza; Atabi, Fereshteh; Omidfar, Kobra; Larijani, Bagher.
Affiliation
  • Nikooie, Rohollah; Shahid Bahonar University of Kerman. Faculty of Physical Education and Sport Science. Department of Exercise Physiology. Kerman. Iran
  • Aveseh, Malihe; Shahid Bahonar University of Kerman. Faculty of Physical Education and Sport Science. Department of Exercise Physiology. Kerman. Iran
  • Rajabi, Hamid; Kharazmi University. Faculty of Physical Education and Sport Science. Department of Exercise Physiology. Tehran. Iran
  • Gharakhanlu, Reza; Tarbiat Modares University. Faculty of Physical Education and Sport Science. Department of Exercise Physiology. Tehran. Iran
  • Atabi, Fereshteh; Tehran University of Medical Sciences. Endocrinology and Metabolism Research Center. Tehran. Iran
  • Omidfar, Kobra; Tehran University of Medical Sciences. Sciences Institute. Tehran. Iran
  • Larijani, Bagher; Tehran University of Medical Sciences. Endocrinology and Metabolism Research Institute. Tehran. Iran
J. physiol. biochem ; 69(4): 865-877, dic. 2013.
Article in English | IBECS | ID: ibc-121644
Responsible library: ES1.1
Localization: BNCS
ABSTRACT
We hypothesized that a part of therapeutic effects of endurance training on insulin resistance is mediated by increase in cardiac and skeletal muscle mitochondrial lactate transporter, monocarboxylate transporter 1 (MCT1). Therefore, we examined the effect of 7 weeks endurance training on the mRNA and protein expression of MCT1 and MCT4 and their chaperon, CD147, on both sarcolemmal and mitochondrial membrane, separately, in healthy and type 2 diabetic rats. Diabetes was induced by injection of low dose of streptozotocin and feeding with high-fat diet. Insulin resistance was confirmed by homeostasis model assessment-estimated insulin resistance index and accuracy of two membranes separation was confirmed by negative control markers (glucose transporter 1 and cytochrome c oxidase. Real-time PCR and western blotting were used for mRNA and protein expression, respectively. Diabetes dramatically reduced MCT1 and MCT4 mRNA and their expression on sarcolemmal membrane whereas the reduction in MCT1 expression was less in mitochondrial membrane. Training increased the MCT1 mRNA and protein expression in both membranes and decreased insulin resistance as an adaptive consequence. In both tissues increase in CD147 mRNA was only parallel to MCT1 expression. The response of MCT1 on sarcolemmal and mitochondrial membranes was different between cardiac and skeletal muscles which indicate that intracellular lactate kinetic is tissue specific that allows a tissue to coordinate whole organism metabolism (AU)
Subject(s)
Search on Google
Collection: National databases / Spain Database: IBECS Main subject: Exercise / Muscle, Skeletal / Monocarboxylic Acid Transporters / Myocardium Limits: Animals Language: English Journal: J. physiol. biochem Year: 2013 Document type: Article Institution/Affiliation country: Kharazmi University/Iran / Shahid Bahonar University of Kerman/Iran / Tarbiat Modares University/Iran / Tehran University of Medical Sciences/Iran
Search on Google
Collection: National databases / Spain Database: IBECS Main subject: Exercise / Muscle, Skeletal / Monocarboxylic Acid Transporters / Myocardium Limits: Animals Language: English Journal: J. physiol. biochem Year: 2013 Document type: Article Institution/Affiliation country: Kharazmi University/Iran / Shahid Bahonar University of Kerman/Iran / Tarbiat Modares University/Iran / Tehran University of Medical Sciences/Iran
...