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PHYSIOLOGY AND NUTRITION

The stiffness response of type IIa fibres after eccentric exercise-induced muscle damage is dependent on ACTN3 r577X polymorphism

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References

  • Alfred, T., Ben-Shlomo, Y., Cooper, R., Hardy, R., Cooper, C., Deary, I. J., … HALCyon study team (2011). ACTN3 genotype, athletic status, and life course physical capability: Meta-analysis of the published literature and findings from nine studies. Human Mutation, 32(9), 1008–1018. doi:10.1002/humu.21526.
  • Assumpcao Cde, O., Lima, L. C., Oliveira, F. B., Greco, C. C., & Denadai, B. S. (2013). Exercise-induced muscle damage and running economy in humans. Scientific World Journal, 2013, 189149. doi:10.1155/2013/189149.
  • Baumert, P., Lake, M. J., Stewart, C. E., Drust, B., & Erskine, R. M. (2016). Genetic variation and exercise-induced muscle damage: Implications for athletic performance, injury and ageing. European Journal of Applied Physiology, 116(9), 1595–1625. doi:10.1007/s00421-016-3411-1.
  • Brancaccio, P., Lippi, G., & Maffulli, N. (2010). Biochemical markers of muscular damage. Clinical Chemistry and Laboratory Medicine, 48(6), 757–767. doi:10.1515/CCLM.2010.179.
  • Broos, S., Malisoux, L., Theisen, D., van Thienen, R., Ramaekers, M., Jamart, C., … Francaux, M. (2016). Evidence for ACTN3 as a speed gene in isolated human muscle fibers. PLoS One, 11(3), e0150594. doi:10.1371/journal.pone.0150594.
  • Broos, S., Van Leemputte, M., Deldicque, L., & Thomis, M. A. (2015). History-dependent force, angular velocity and muscular endurance in ACTN3 genotypes. European Journal of Applied Physiology, 115(8), 1637–1643. doi:10.1007/s00421-015-3144-6.
  • Cheung, K., Hume, P., & Maxwell, L. (2003). Delayed onset muscle soreness: Treatment strategies and performance factors. Sports Medicine, 33(2), 145–164. doi: 10.2165/00007256-200333020-00005
  • Crameri, R. M., Aagaard, P., Qvortrup, K., Langberg, H., Olesen, J., & Kjaer, M. (2007). Myofibre damage in human skeletal muscle: Effects of electrical stimulation versus voluntary contraction. The Journal of Physiology, 583(Pt 1), 365–380. doi:10.1113/jphysiol.2007.128827.
  • Deldicque, L., De Bock, K., Maris, M., Ramaekers, M., Nielens, H., Francaux, M., & Hespel, P. (2010). Increased p70s6k phosphorylation during intake of a protein-carbohydrate drink following resistance exercise in the fasted state. European Journal of Applied Physiology, 108(4), 791–800. doi: 10.1007/s00421-009-1289-x
  • Ehlers, M. L., Celona, B., & Black, B. L. (2014). NFATc1 controls skeletal muscle fiber type and is a negative regulator of MyoD activity. Cell Reports, 8(6), 1639–1648. doi:10.1016/j.celrep.2014.08.035.
  • Eynon, N., Hanson, E. D., Lucia, A., Houweling, P. J., Garton, F., North, K. N., & Bishop, D. J. (2013). Genes for elite power and sprint performance: ACTN3 leads the way. Sports Medicine, 43(9), 803–817. doi:10.1007/s40279-013-0059-4.
  • Hudson, M. B., & Price, S. R. (2013). Calcineurin: A poorly understood regulator of muscle mass. The International Journal of Biochemistry & Cell Biology, 45(10), 2173–2178. doi:10.1016/j.biocel.2013.06.029.
  • Lin, Z., Hijikata, T., Zhang, Z., Choi, J., Holtzer, S., Sweeney, H. L., & Holtzer, H. (1998). Dispensability of the actin-binding site and spectrin repeats for targeting sarcomeric alpha-actinin into maturing Z bands in vivo: Implications for in vitro binding studies. Developmental Biology, 199(2), 291–308. doi:10.1006/dbio.1998.8920.
  • Macaluso, F., Isaacs, A. W., & Myburgh, K. H. (2012). Preferential type II muscle fiber damage from plyometric exercise. Journal of Athletic Training, 47(4), 414–420. doi:10.4085/1062-6050-47.4.13.
  • MacArthur, D. G., Seto, J. T., Raftery, J. M., Quinlan, K. G., Huttley, G. A., Hook, J. W., … North, K. N. (2007). Loss of ACTN3 gene function alters mouse muscle metabolism and shows evidence of positive selection in humans. Nature Genetics, 39(10), 1261–1265. doi:10.1038/ng2122.
  • MacIntyre, D. L., Reid, W. D., & McKenzie, D. C. (1995). Delayed muscle soreness. The inflammatory response to muscle injury and its clinical implications. Sports Medicine, 20(1), 24–40. doi: 10.2165/00007256-199520010-00003
  • Malisoux, L., Francaux, M., Nielens, H., Renard, P., Lebacq, J., & Theisen, D. (2006). Calcium sensitivity of human single muscle fibers following plyometric training. Medicine & Science in Sports & Exercise, 38(11), 1901–1908. doi:10.1249/01.mss.0000232022.21361.47.
  • Malisoux, L., Jamart, C., Delplace, K., Nielens, H., Francaux, M., & Theisen, D. (2007). Effect of long-term muscle paralysis on human single fiber mechanics. Journal of Applied Physiology, 102(1), 340–349. doi:10.1152/japplphysiol.00609.2006.
  • McHugh, M. P., Connolly, D. A., Eston, R. G., & Gleim, G. W. (1999). Exercise-induced muscle damage and potential mechanisms for the repeated bout effect. Sports Medicine, 27(3), 157–170. doi: 10.2165/00007256-199927030-00002
  • Mitchell, C. J., Churchward-Venne, T. A., Bellamy, L., Parise, G., Baker, S. K., & Phillips, S. M. (2013). Muscular and systemic correlates of resistance training-induced muscle hypertrophy. PLoS One, 8(10), e78636. doi:10.1371/journal.pone.0078636.
  • Miyamoto, N., Miyamoto-Mikami, E., Hirata, K., Kimura, N., & Fuku, N. (2018). Association analysis of the ACTN3 R577X polymorphism with passive muscle stiffness and muscle strain injury. Scandinavian Journal of Medicine & Science in Sports, 28(3), 1209–1214. doi:10.1111/sms.12994.
  • Morgan, D. L., & Proske, U. (2004). Popping sarcomere hypothesis explains stretch-induced muscle damage. Clinical and Experimental Pharmacology and Physiology, 31(8), 541–545. doi:10.1111/j.1440-1681.2004.04029.x.
  • North, K. N., & Beggs, A. H. (1996). Deficiency of a skeletal muscle isoform of alpha-actinin (alpha-actinin-3) in merosin-positive congenital muscular dystrophy. Neuromuscular Disorders, 6(4), 229–235. doi: 10.1016/0960-8966(96)00361-6
  • Ohnhaus, E. E., & Adler, R. (1975). Methodological problems in the measurement of pain: A comparison between the verbal rating scale and the visual analogue scale. Pain, 1(4), 379–384. doi: 10.1016/0304-3959(75)90075-5
  • Papadimitriou, I. D., Lucia, A., Pitsiladis, Y. P., Pushkarev, V. P., Dyatlov, D. A., Orekhov, E. F., … Eynon, N. (2016). ACTN3 r577x and ACE I/D gene variants influence performance in elite sprinters: A multi-cohort study. BMC Genomics, 17(285), doi:10.1186/s12864-016-2462-3.
  • Paulsen, G., Mikkelsen, U. R., Raastad, T., & Peake, J. M. (2012). Leucocytes, cytokines and satellite cells: What role do they play in muscle damage and regeneration following eccentric exercise? Exercise Immunology Review, 18, 42–97.
  • Pimenta, E. M., Coelho, D. B., Cruz, I. R., Morandi, R. F., Veneroso, C. E., de Azambuja Pussieldi, G., … De Paz Fernandez, J. A. (2012). The ACTN3 genotype in soccer players in response to acute eccentric training. European Journal of Applied Physiology, 112(4), 1495–1503. doi:10.1007/s00421-011-2109-7.
  • Proske, U., & Allen, T. J. (2005). Damage to skeletal muscle from eccentric exercise. Exercise and Sport Sciences Reviews, 33(2), 98–104. doi: 10.1097/00003677-200504000-00007
  • Rui, Y., Bai, J., Perrimon, N., & Barsh G. S. (2010). Sarcomere formation occurs by the assembly of multiple latent protein complexes. PLoS Genetics, 6(11), e1001208. doi:10.1371/journal.pgen.1001208.
  • Valenzuela, P. L., Montalvo, Z., Sanchez-Martinez, G., Torrontegi, E., De La Calle-Herrero, J., Dominguez-Castells, R., … De La Villa, P. (2018). Relationship between skeletal muscle contractile properties and power production capacity in female Olympic rugby players. European Journal of Sport Science, 18(5), 677–684. doi:10.1080/17461391.2018.1438521.
  • Vandesompele, J., De Preter, K., Pattyn, F., Poppe, B., Van Roy, N., De Paepe, A., & Speleman, F. (2002). Accurate normalization of real-time quantitative RT-PCR data by geometric averaging of multiple internal control genes. Genome Biology, 3(7), RESEARCH0034. doi: 10.1186/gb-2002-3-7-research0034
  • Venckunas, T., Skurvydas, A., Brazaitis, M., Kamandulis, S., Snieckus, A., & Moran, C. N. (2012). Human alpha-actinin-3 genotype association with exercise-induced muscle damage and the repeated-bout effect. Applied Physiology, Nutrition, and Metabolism, 37(6), 1038–1046. doi:10.1139/h2012-087.
  • Vincent, B., De Bock, K., Ramaekers, M., Van den Eede, E., Van Leemputte, M., Hespel, P., & Thomis, M. A. (2007). ACTN3 (R577X) genotype is associated with fiber type distribution. Physiological Genomics, 32(1), 58–63. doi:10.1152/physiolgenomics.00173.2007.
  • Vincent, B., Windelinckx, A., Nielens, H., Ramaekers, M., Van Leemputte, M., Hespel, P., & Thomis, M. A. (2010). Protective role of alpha-actinin-3 in the response to an acute eccentric exercise bout. Journal of Applied Physiology, 109(2), 564–573. doi:10.1152/japplphysiol.01007.2009.
  • Wallace, M. A., Lamon, S., & Russell, A. P. (2012). The regulation and function of the striated muscle activator of rho signaling (STARS) protein. Frontiers in Physiology, 3, 469. doi:10.3389/fphys.2012.00469.
  • Wang, J., Shaner, N., Mittal, B., Zhou, Q., Chen, J., Sanger, J. M., & Sanger, J. W. (2005). Dynamics of Z-band based proteins in developing skeletal muscle cells. Cell Motility and the Cytoskeleton, 61(1), 34–48. doi:10.1002/cm.20063.
  • Zanou, N., & Gailly, P. (2013). Skeletal muscle hypertrophy and regeneration: Interplay between the myogenic regulatory factors (MRFs) and insulin-like growth factors (IGFs) pathways. Cellular and Molecular Life Sciences, 70(21), 4117–4130. doi:10.1007/s00018-013-1330-4.
  • Zempo, H., Tanabe, K., Murakami, H., Iemitsu, M., Maeda, S., & Kuno, S. (2010). ACTN3 polymorphism affects thigh muscle area. International Journal of Sports Medicine, 31(2), 138–142. doi:10.1055/s-0029-1242808.

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