Interactions Between Fatty Acid Transport Proteins, Genes That Encode for Them, and Exercise: A Systematic Review

Author:

Jayewardene Avindra F.1,Mavros Yorgi1,Reeves Anneliese1,Hancock Dale P.2,Gwinn Tom1,Rooney Kieron B.1

Affiliation:

1. Discipline of Exercise and Sport Science; Faculty of Health Sciences; University of Sydney; Lidcombe New South Wales Australia

2. School of Molecular Biosciences; Faculty of Science; University of Sydney; Camperdown New South Wales Australia

Funder

Australian Postgraduate Award Scholarship

CRN in Advancing Exercise and Sport Science

Publisher

Wiley

Subject

Cell Biology,Clinical Biochemistry,Physiology

Reference86 articles.

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2. Regulation of metabolic genes in human skeletal muscle by short-term exercise and diet manipulation;Arkinstall;Am J Physiol Endocrinol Metab,2004

3. Increased malonyl-CoA levels in muscle from obese and type 2 diabetic subjects lead to decreased fatty acid oxidation and increased lipogenesis; thiazolidinedione treatment reverses these defects;Bandyopadhyay;Diabetes,2006

4. Acute exercise remodels promoter methylation in human skeletal muscle;Barres;Cell Metab,2012

5. Differential effects of contraction and PPAR agonists on the expression of fatty acid transporters in rat skeletal muscle;Benton;J Physiol,2006

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