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2013 | 01 | 1 |

Tytuł artykułu

The PPARa gene polymorphism in team sports athletes

Treść / Zawartość

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN
Peroxisome proliferator-activated receptor α (PPARα) is a transcription factor that regulates lipid and glucose metabolism. Accumulating evidence suggests that the intron 7 C allele of the PPARA gene rs4253778 G/C polymorphism has an advantage for power-oriented athletes, presumably due to the hypertrophic effects on skeletal muscle and increase in glucose utilization in response to anaerobic exercise. The G allele, however, is said to be favorable for the endurance-oriented athletes. The metabolic demands of team sports involve aerobic and anaerobic energy pathways, as a result of the intermittent physical activity. The aim of the present study was to investigate the association between the PPARA gene polymorphism and team-sport athletic status. A total of 665 Russian athletes from 14 team sports and 1,706 controls were involved in the case-control study. We found that the frequency of the PPARA C allele was significantly higher in athletes compared to controls (20.5 vs. 16.4%, P = 0.0009), suggesting that anaerobic rather than aerobic metabolism may be crucial to the game performance in team sports. This means that our study indicates the association between the PPARA gene G/C polymorphism and team-sport athletic status. Although more replication studies are needed, the preliminary data suggest an opportunity to use the analysis of PPARA polymorphism, along with other gene variations and standard phenotypic assessment in team sports selection.

Wydawca

-

Rocznik

Tom

01

Numer

1

Opis fizyczny

p.19-24,fig.,ref.

Twórcy

  • Sport Technology Education Research Laboratory, Volga Region State Academy of Physical Culture, Sport and Tourism 33, Universiade Village, 420138, Kazan, Russia
  • Laboratory of Molecular Genetics, Kazan State Medical University, Kazan, Russia
  • Sport Technology Education Research Laboratory, Volga Region State Academy of Physical Culture, Sport and Tourism, Kazan, Russia

Bibliografia

  • Ahmetov I.I., Gavrilov D.N., Astratenkova I.V., Druzhevskaya A.M., Malinin A.V., Romanova E.E., Rogozkin V.A. The association of ACE, ACTN3 and PPARA gene variants with strength phenotypes in middle school-age children. J. Physiol. Sci. 2013; 63: 79–85.
  • Ahmetov I.I., Mozhayskaya I.A., Flavell D.M., Astratenkova I.V., Komkova A.I., Lyubaeva E.V., Tarakin P.P., Shenkman B.S., Vdovina A.B., Netreba A.I., Popov D.V., Vinogradova O.L., Montgomery H.E., Rogozkin V.A. PPARα gene variation and physical performance in Russian athletes. Eur. J. App. Physiol. 2006; 97: 103–108.
  • Ahmetov I.I., Williams A.G., Popov D.V., Lyubaeva E.V., Hakimullina A.M., Fedotovskaya O.N., Mozhayskaya I.A., Vinogradova O.L., Astratenkova I.V., Montgomery H.E., Rogozkin V.A. The combined impact of metabolic gene polymorphisms on elite endurance athlete status and related phenotypes. Hum Genet. 2009; 126: 751–761.
  • Akhmetov I.I., Popov D.V., Mozhayskaya I.A., Missina S.S., Astratenkova I.V., Vinogradova O.L., Rogozkin V.A. Association of regulatory genes polymorphisms with aerobic and anaerobic performance of athletes. Ross Fiziol. Zh Im I M Sechenova. 2007; 93: 837–843.
  • Aoyama T., Peters J.M., Iritani N., Nakajima T., Furihata K., Hashimoto T., Gonzalez F.J. Altered constitutive expression of fatty acidmetabolizing enzymes in mice lacking the peroxisome proliferator-activated receptor α (PPARα). J. Biol. Chem. 1998; 273: 5678–5684.
  • Braissant O., Foufelle F., Scotto C., Dauca M., Wahli W. Differential expression of Peroxisome proliferator-activated receptors (PPARs): tissue distribution of PPAR-alpha, -beta, and –gamma in the adult rat. Endocrinology 1996; 137: 354–366.
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  • Eynon N., Meckel Y., Sagiv M., Yamin C., Amir R., Sagiv M., Goldhammer E., Duarte J.A., Oliveira J. Do PPARGC1A and PPARalpha polymorphisms influence sprint or endurance phenotypes? Scand. J. Med. Sci. Sports. 2010; 20: 145–150.
  • Flavell D.M., Ireland H., Stephens J.W., et al. Peroxisome proliferator-activated receptor α gene variation influences age of onset and progression of type 2 diabetes. Diabetes 2005; 54: 582–586.
  • Flavell DM, Jamshidi Y, Hawe E, et al. Peroxisome proliferator-activated receptor α gene variants influence progression of coronary atherosclerosis and risk of coronary artery disease. Circulation 2002; 105: 1440–1445.
  • Ginevičienë V., Pranckevičienë E., Milađius K., Kučinskas V. Relating fitness phenotypes to genotypes in Lithuanian elite athletes. Acta Medica Lituanica 2010; 17 (1–2): 1–10.
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  • Horowitz J.F., Leone T.C., Feng W., Kelly D.P., Klein S. Effect of endurance training on lipid metabolism in women: a potential role for PPARα in the metabolic response to training. Am. J. Physiol. Endocrinol. Metab. 2000; 279: 348–355.
  • Jamshidi Y., Montgomery H.E., Hense H.W., et al. Peroxisome proliferator-activated receptor α gene regulates left ventricular growth in response to exercise and hypertension. Circulation 2002; 105: 950–955.
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  • Maciejewska A., Sawczuk M., Cieszczyk P. Variation in the PPARα gene in Polish rowers. J. Sci. Med. Sport. 2011; 14 (1): 58–64.
  • Russel A.P., Feilchenfeldt Y., Schreiber S., et al. Endurance training in humans leads to fiber type-specific increases in levels of peroxisome proliferator-activated receptor-γ coactivator-1 and peroxisome proliferator-activated receptor-α in skeletal muscle. Diabetes 2003; 52: 2874–2881.
  • Schmitt B., Fluck M., Decombaz J. Transcriptional adaptations of lipid metabolism in tibialis anterior muscle of endurance-trained athletes. Physiol. Genomics. 2003; 15: 148–157.
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Typ dokumentu

Bibliografia

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Identyfikator YADDA

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