Alfred, T., Ben-Shiomo, Y., Cooper, R., Hardy, R., Cooper, C., Deary, I.J., et al. (2011). ACTN3 Genotype, Athletic Status, and Life Course Physical Capability: Meta-Analysis of the Published Literature and Findings from Nine Studies. Hum Mut., 32:1008–1018.
Alibegovic, A.C., Sonne, M.P., Hojbjerre, L., et al. (2010). Insulin resistance induced by physical inactivity is associated with multiple transcriptional changes in skeletal muscle in young men. Am J Physiol Endocrinol Metab., 299:e752–63.
Alvarez, R., Terrados, N., Ortolano, R., et al. (2000). Genetic variation in the renin-angiotensin system and athletic performance. Eur J Appl Physiol., 82: 117-120. An, P., Teran Garcia, M., Rice, T., et al. (2005). Genome-wide linkage scans for prediabetes phenotypes in response to 20 weeks of endurance exercise training in non-diabetic whites and blacks: the HERITAGE Family Study. Diabetologia, 48:1142-1149. Atasoy S. (2013). Aynı bedende farklı DNA’lar. http://www.hurriyet.com.tr/yazarlar/4912171.asp
Bayraktar, B., Kurtoğlu M. (2009).Sporda Performans, Etkili Faktörler, Değerlendirilmesi ve Artırılması. Klinik Gelişim, 22(1): 16-24.
Barres, R., Yan, J., Egan, B., et al. (2012). Acute exercise remodels promoter methylation in human skeletal muscle. Cell Metabolism, 15:405–11. Bertram, J. (2000). The molecular biology of cancer. Mol. Aspects Med., 21 (6): 167–223.
Bird, A. (2002). DNA methylation patterns and epigenetic memory. Genes Dev. (16): 6–21. Bouchard, C., Chagnon, M., Thibault, M.C., et al. (1989). Muscle genetic variants and relationship with performance and trainability. Med Sci Sports Exerc., 21:71-77. Calvo, J.A., Daniels, T.G., Wang, X., et al. (2008). Muscle-specific expression of PPAR{gamma} coactivator-1{alpha} improves exercise performance and increases peak oxygen uptake. J Appl Physiol., 104:1304-1312.
Chandramohan, Y., Droste, S.K., Arthur, J.S, et al. (2008). The forced swimming-induced behavioral immobility response involves histone H3 phospho-acetylation and c-Fos induction in dentate gyrus granule neurons via activation of the N-methyl-D-aspartate/extracellular signal-regulated kinase/mitogen- and stress activated kinase signaling pathway. Eur J Neurosci., 27: 2701–13. Chuang, J.C., Johns, P.A.(2007). Epigenetics and microRNAs. Pediatr Res. 61(5):24R-29R.
Collins, M., Renault, V., Grobler, L.A., et al. (2003). Athletes with exercise associated fatigue have abnormally short muscle DNA telomeres. Med Sci Sports Exerc., 35(9):1524-8.
Cotman, C.W., Engesser-Cesar, C. (2002). Exercise enhances and protects brain function. Exerc Sport Sci Rev., 30: 75–9.
Cieszczyk, P., Maciejewska, A., Sawczuk, M.(2009). Gene Doping in Modern Sport. JBE. 5,1. De la Chapelle. A., Traskelin, A.L., Juvonen, E. (1993). Truncated erythropoietin receptor causes dominantly inherited benign human erythrocytosis. Proc Natl Acad Sci U S A, 90(10):4495-9. Echegaray, M., Rivera, M.A. (2001). Role of creatine kinase isoenzymes on muscular and cardiorespiratory endurance: genetic and molecular evidence. Sports Med., 31:919-934.
Egger, G., Liang, G., Aparicio, A. and Jones, P.A. (2004). Epigenetics in human disease and prospects for epigenetic therapy. Nature, (429):457–463.
Fraga, M.F., Ballestar, E., Paz, M.F., et al. (2005). Epigenetic differences arise during the lifetime of monozygotic twins. Proc Natl Acad Sci USA., 102:10604–9.
Gayagay, G., Yu, B., Hambly, B., et al. (1998). Elite endurance and the ACE I allele-the role of genes in athletic performance. Hum Genet, 103:48-50.
Spor, Egzersiz ve Antrenman Bilimi, 2015, Cilt 1, Sayı 1, 63-76 O. Eroğlu, R. Zileli
74
Girgenrath, S., Song, K., Whittemore, L.A. (2005). Loss of myostatin expression alters fiber-type distribution and expression of myosin heavy chain isoforms in slow- and fast-type skeletal muscle. Muscle Nerve. 31: 34–40.
Graves, R. (1955). The Greek Myths. Baltimore: Penguin, section. 75.b, pp 252–56.
Gunel, T., Gumusoglu, E., Hosseini, M.K., Yilmazyildirim, E., Dolekcap, I., Aydinli, K. (2014). Effect of angiotensin I-converting enzyme and α-actinin-3 gene polymorphisms on sport performance. Mol Med Rep., 9(4):1422-6.
Haroon, Z.A., Amin, K., Jiang, X., Arcasoy, M.O. (2003). A novel role for erythropoietin during fibrin-induced wound healing response. Am J Pathol, 163(3):993-1000. Hautala, A.J., Rankinen, T., Kiviniemi, A.M., et al. (2006). Heart rate recovery after maximal exercise is associated with acetylcholine receptor M2 (CHRM2) gene polymorphism. Am J Physiol Heart Circ Physiol., 291:H459-H466. He, Z., Hu, Y., Feng, L., et al. (2007). NRF2 genotype improves endurance capacity in response to training. Int J Sports Med., 28:717-721. Henderson, J., Withford-Cave, J.M., Duffy, D.L., et al. (2005). The EPAS1 gene influences the aerobic-anaerobic contribution in elite endurance athletes. Hum Genet., 118:416-423.
Heyn, H., Li, N., Ferreira, H.J., et al. (2012). Distinct DNA methylomes of newborns and centenarians. Proc Natl Acad Sci USA., 109: 10522–7.
Hillman, C.H., Erickson, K.I., Kramer, A.F. (2008). Be smart, exercise your heart: exercise effects on brain and cognition. Nat Rev Neurosci., 9:58–65.
Homer, Iliad. 6.179–182.
Homer, Iliad. 16.328–329.
Jenuwein, T. & Allis, C. D. (2001). Translating the histone code. Science (293): 1074–1080.
Kerenyi, K. (1959). The Heroes of the Greeks. London and New York: Thames and Hudson. Kim, D.H., Saetrom, P., Snøve, O. Rossi, J.J.(2008). MicroRNA-directed transcriptional gene silencing in mammalian cells. Proc Natl Acad Sci. 105: 16230-35. Khoschnau, S., Melhus, H., Jacobson, A., et al. (2008). Type I collagen {alpha}1 Sp1 polymorphism and the risk of cruciate ligament ruptures or shoulder dislocations. Am J Sports Med. 36 (12):2432-6. Kostek, M.C., Delmonico, M.J., Reichel, J.B., et al. (2005). Muscle strength response to strength training is influenced by insulin-like growth factor 1 genotype in older adults. J Appl Physiol., 98:2147-2154. Loewe. L., Charlesworth. B. (2006). Inferring the distribution of mutational effects on fitness in Drosophila. Biol Lett., 2 (3): 426–30. Lucia, A., Gomez-Gallego, F., Barroso, I., Rabadan, M., Bandres, F., San Juan, A.F., Chicharro, J.L., Ekelund, U., Brage, S., Earnest, C.P., Wareham NJ & Franks PW (2005). PPARGC1A genotype (Gly482Ser) predicts exceptional endurance capacity in European men. J Appl Physiol, 99: 344–348.
Marcell, T.J., Hawkins, S.A., Tarpenning, K.M., ve ark. (2003). Longitudinal analysis of lactate threshold in male and female master athletes. Med Sci Sports Exerc.,35(5):810-7. Mason, S.D., Rundqvist, H., Papandreou, I., et al. (2007). HIF-1alpha in endurance training: suppression of oxidative metabolism. Am J Physiol Regul Integr Comp Physiol, 293:R2059-R2069.
McGee, S.L., Fairlie, E., Garnham, A.P., et al. (2009). Exercise-induced histone modifications in human skeletal muscle. J Physiol., 587: 5951–8. McPherron, A.C., Lawler, A.M., Lee, S.J. (1997). Regulation of skeletal muscle mass in mice by a new TGF-beta superfamily member. Nature, 387:83–90. Mokone, G.G., Gajjar, M., September, A.V., et al. (2005). The guanine-thymine dinucleotide repeat polymorphism within the tenascin-C gene is associated with Achilles tendon injuries. Am J Sports Med., 33:1016-1021.
Spor, Egzersiz ve Antrenman Bilimi, 2015, Cilt 1, Sayı 1, 63-76 O. Eroğlu, R. Zileli
75
Mokone, G.G., Schwellnus, M.P., Noakes, T.D., Collins, M. (2008). The COL5A1 gene and Achilles tendon pathology. Scand J Med Sci Sports, 2006;16:19-26.
Montgomery, H., Clarkson, P., Barnard, M., et al. (1999). Angiotensin converting-enzyme gene insertion/deletion polymorphism and response to physical training. Lancet, 353: 541-545.
Montgomery, H.E., Marshall, R., Hemingway, H., et al. (1998). Human gene for physical performance. Nature, 393:221-222.
Moore, G. E., Shuldiner, A. R., Zmuda, J. M., Ferrell, R. E., McCole, S. D. & Hagberg, J. M. Obesity gene variant and elite endurance performance. Metabolism, 50, 1391–1392.
Murell, A., Rakyan, V.K., Beck, S. (2005). From genome to epigenome. Human Mol. Gen., 14, (1): R3-R10.
Myerson, S., Hemingway, H., Budget, R., et al. (1999). Human angiotensin I-converting enzyme gene and endurance performance. J Appl Physiol., 87(4): 1313-1316.
Nakajima, K., Takeoka, M., Mori, M., et al. (2010). Exercise effects on methylation of ASC gene. Int J Sports Med., 31:671–5.
Nitert, M.D., Dayeh, T., Volkov, P., et al. (2012). Impact of an exercise Intervention on DNA methylation in skeletal muscle from first degree relatives of patients with type 2 diabetes. Diabetes, 61:3322–32.
Nottke, A., Colaiácovo, M.P., Shi, Y. (2009). Developmental roles of the histone lysine demethylases. Development, 136 (6): 879–89.
O'Connell, K., Posthumus, M., Collins, M. (2011). COL6A1 gene and Ironman triathlon performance. Int. J. Sports Med., 32(11):896-901.
Orysiak, J., Busko K., Michalski R., Mazur-Różycka, J. Gajewski, J., Malczewska-Lenczowska, J., Sitkowski, D., Pokrywka, A. (2014). Relationship between ACTN3 R577X polymorphism and maximal power output in elite Polish athletes. Medicina, 50(5): 303–308.
Philip, H.(2011). Genetics of Populations. Jones & Bartlett Learning. pp. 104.
Podewils, L.J., Guallar, E., Kuller, L.H., et al. (2005). Physical activity, APOE genotype, and dementia risk: findings from the Cardiovascular Health Cognition Study. Am J Epidemiol., 161: 639–51.
Posthumus, M., Schwellnus, M.P., Collins, M. (2011). The COL5A1 gene: a novel marker of endurance running performance. Med. Sci. Sports Exerc., 43(4):584-9. Prior, S.J., Hagberg, J.M., Paton, C.M., et al. (2006). DNA sequence variation in the promoter region of the VEGF gene impacts VEGF gene expression and maximal oxygen consumption. Am J Physiol Heart Circ Physiol., 290:H1848-H1855.
Rankinen, T., Church, T., Rice, T., Markward, N., Leon, A. S., Rao, D. C., Bouchard, C. (2007). Effect of endothelin 1 genotype on blood pressure is dependent on physical activity or fitness levels. Hypertension, 50 (6), 1120-1125. Reik, W. (2007). Stability and flexibility of epigenetic gene regulation in mammalian development. Nature, 447 (7143): 425–32. Rico-Sanz, J., Rankinen, T.,Joanisse, D.R., et al. (2003). Associations between cardiorespiratory responses to exercise and the C34T AMPD1 gene polymorphism in the HERITAGE Family Study. Physiol Genomics, 14:161-166.
Rodenhiser, D., Mann, M. (2006). Epigenetics and human disease: translating basic biology into clinical applications. CMAJ, 174(3): 341-348.
Ronn, T., Volkov, P., Davegardh, C., et al. (2013). A six months exercise intervention influences the genome-wide DNA methylation pattern in human adipose tissue. PLoS Genet., 9:e1003572.
Rosenfeld, J.A., Wang, Z., Schones, D.E., Zhao, K., DeSalle, R., Zhang, M.Q. (2009). Determination of enriched histone modifications in non-genic portions of the human genome. BMC Genomics, 10: 143. Rubio, J.C., Perez, M., Mate Munoz, J.L., et al. (2008). AMPD1 genotypes and exercise capacity in McArdle patients. Int J Sports Med., 29:331-335.
Spor, Egzersiz ve Antrenman Bilimi, 2015, Cilt 1, Sayı 1, 63-76 O. Eroğlu, R. Zileli
76
Saetrom, P., Snøve, O., Rossi, J.J. (2007). Epigenetics and microRNAs. Pediatr Res. 61:17R-23R. Santiago, C., Ruiz, J.R., Buxens, A., Artieda, M., Arteta, D. (2011). Trp64Arg polymorphism in ADRB3 gene is associated with elite endurance performance. Br J Sports Med., 45:2 147-149.
Saunders, P.U., Pyne, D.B., Telford, R.D., Hawley, J.A. (2004). Factors affecting running economy in trained distance runners. Sport Med., 34:465–85. Sawyer, S.A., Parsch, J., Zhang, Z., Hartl, D.L. (2007). Prevalence of positive selection among nearly neutral amino acid replacements in Drosophila. Proc. Natl. Acad. Sci. U.S.A., 104 (16): 6504–10. Schuelke, M., Wagner, K.R., Stolz, L.E., Hubner, C., Riebel, T., et al. (2004). Myostatin mutation associated with gross muscle hypertrophy in a child. N Engl J Med. 350:2682–2688.
Siren, A.L., Fratelli, M., Brines, M., Goemans, C., Casagrande, S., Lewczuk, P., et al.(2001). Erythropoietin prevents neuronal apoptosis after cerebral ischemia and metabolic stress. Proc Natl Acad Sci USA, 98(7): 4044-9.
Smith, J.A., Kohn, T.A., Chetty, A.K., et al. (2008). CaMK activation during exercise is required for histone hyperacetylation and MEF2A binding at the MEF2 site on the Glut4 gene. Am J Physiol Endocrinol Metab., 295: E698–704.
Süel, E., Pehlivan, A. (2015). Angiotensin Dönüştürücü (Converting) Enzim (ACE) Gen Polimorfizminin Elit Basketbolcu ve Voleybolcularda Karşılaştırılması. Uluslararası Spor, Egzersiz ve Antrenman Bilimleri Dergisi, 1(1): 40-50. Strain, L., John, C.S., Mark, P.R., David., T. Bonthron. (1998). A True Hermaphrodite Chimera Resulting from Embryo Amalgamation after in Vitro Fertilization. The New England Journal of Medicine, 338 (3): 166–169. Tanaka, M., Hadjantonakis, A.K., Nagy, A. (2001). Aggregation chimeras. Combining ES cells, diploid and tetraploid embryos. Methods in molecular biology, 158:135–54.
Taylor, R.R., Mamotte, C.D., Fallon, K., et al. (1999). Elite athletes and the gene for angiotensin-converting enzyme. J Appl Physiol., 87: 1035- 1037.
Unal, M., Ozer Unal, D. (2004). Gene Doping in Sports. Sports Med., 34, 357-362.
Wagoner, LE., Craft, L.L., Zengel, P., McGuire, N., Rathz D.A., Dorn, G.W., Liggett, S.B. (2002). Polymorphisms of the beta1-adrenergic receptor predict exercise capacity in heart failure. Am. Heart J., 144(5):840-6.
Weinberg, R.A. (2013). The biology of cancer. 2nd edition, Garland Science, Taylor & Francis Group, LLC. Weislo, L. (2012). Index of Lance Armstrong doping allegations over the years. Cyclingnews. Future Publishing Limited. Retrieved 2012-08-24.
Wells, D.J.(2008). Gene Doping: the Hype and the Reality. British Journal of Pharmacology, 154, 623–631.
Williams, A.G., Rayson, M.P., Jubb, M., et al. (2000). The ACE gene and muscle performance. Nature, 403: 614.
Wolfarth, B., Rankinen, T., Mu¨hlbaur, S., Scherr, J., Boulay, M. R., Pe´russe, L. et al. (2007). Association between a b2-adrenergic receptor polymorphism and elite endurance performance. Metab. Clin. Exp., 56, 1649–1651. Yang, N.,MacArthur, D.G., Gulbin, J.P., Hahn, A.G., Beggs, A.H., Easteal, S., & North, K. (2003). ACTN3 Genotype Is Associated with Human Elite Athletic Performance. Am J Hum Genet. 73(3): 627–631. Zhou, D.Q., Hu, Y., Liu, G., Gong, L., Xi, Y., Wen, L. (2006). Muscle-specific creatine kinase gene polymorphism and running economy responses to an 18-week 5000-m training programme. Br J Sports Med., 40:988-991.
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