A Single Nucleotide Polymorphism Associates With the Response of Muscle ATP Synthesis to Long-Term Exercise Training in Relatives of Type 2 Diabetic Humans

Author:

Kacerovsky-Bielesz Gertrud1,Kacerovsky Michaela1,Chmelik Marek12,Farukuoye Michaela1,Ling Charlotte3,Pokan Rochus4,Tschan Harald4,Szendroedi Julia156,Schmid Albrecht Ingo127,Gruber Stephan2,Herder Christian5,Wolzt Michael8,Moser Ewald27,Pacini Giovanni9,Smekal Gerhard4,Groop Leif3,Roden Michael156

Affiliation:

1. Karl-Landsteiner Institute for Endocrinology and Metabolism and 1st Medical Department, Hanusch Hospital, Vienna, Austria

2. Magnetic Resonance Center of Excellence and Department of Radiology, Medical University of Vienna, Vienna, Austria

3. Department of Clinical Sciences, Lund University, Malmö, Sweden

4. Department of Sports and Exercise and Physiology, University of Vienna, Vienna, Austria

5. Institute for Clinical Diabetology, German Diabetes Center, Leibniz Center for Diabetes Research, Düsseldorf, Germany

6. Department of Metabolic Disease, Heinrich Heine University Düsseldorf, Düsseldorf, Germany

7. Center for Medical Physics and Biomedical Engineering, Medical University of Vienna, Vienna, Austria

8. Department of Clinical Pharmacology, Medical University of Vienna, Vienna, Austria

9. Metabolic Unit, Institute of Biomedical Engineering, Consiglio Nazionale delle Ricerche, Padua, Italy

Abstract

OBJECTIVE Myocellular ATP synthesis (fATP) associates with insulin sensitivity in first-degree relatives of subjects with type 2 diabetes. Short-term endurance training can modify their fATP and insulin sensitivity. This study examines the effects of moderate long-term exercise using endurance or resistance training in this cohort. RESEARCH DESIGN AND METHODS A randomized, parallel-group trial tested 16 glucose-tolerant nonobese relatives (8 subjects in the endurance training group and 8 subjects in the resistance training group) before and after 26 weeks of endurance or resistance training. Exercise performance was assessed from power output and oxygen uptake (Vo2) during incremental tests and from maximal torque of knee flexors (MaxTflex) and extensors (MaxText) using isokinetic dynamometry. fATP and ectopic lipids were measured with 1H/31P magnetic resonance spectroscopy. RESULTS Endurance training increased power output and Vo2 by 44 and 30%, respectively (both P < 0.001), whereas resistance training increased MaxText and MaxTflex by 23 and 40%, respectively (both P < 0.001). Across all groups, insulin sensitivity (382 ± 90 vs. 389 ± 40 mL ⋅ min−1 ⋅ m−2) and ectopic lipid contents were comparable after exercise training. However, 8 of 16 relatives had 26% greater fATP, increasing from 9.5 ± 2.3 to 11.9 ± 2.4 μmol ⋅ mL−1 ⋅ m−1 (P < 0.05). Six of eight responders were carriers of the G/G single nucleotide polymorphism rs540467 of the NDUFB6 gene (P = 0.019), which encodes a subunit of mitochondrial complex I. CONCLUSIONS Moderate exercise training for 6 months does not necessarily improve insulin sensitivity but may increase ATP synthase flux. Genetic predisposition can modify the individual response of the ATP synthase flux independently of insulin sensitivity.

Publisher

American Diabetes Association

Subject

Advanced and Specialized Nursing,Endocrinology, Diabetes and Metabolism,Internal Medicine

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