Sprint and Strength Training Modulates Autophagy and Proteostasis in Aging Sprinters
Hentilä, J., Hulmi, J. J., Laakkonen, E. K., Ahtiainen, J. P., Suominen, H., & Korhonen, M. T. (2020). Sprint and Strength Training Modulates Autophagy and Proteostasis in Aging Sprinters. Medicine and Science in Sports and Exercise, 52(9), 1948-1959. https://doi.org/10.1249/MSS.0000000000002340
Julkaistu sarjassa
Medicine and Science in Sports and ExerciseTekijät
Päivämäärä
2020Oppiaine
Valmennus- ja testausoppiBiomekaniikkaLiikuntafysiologiaGerontologia ja kansanterveysGerontologian tutkimuskeskusHyvinvoinnin tutkimuksen yhteisöScience of Sport Coaching and Fitness TestingBiomechanicsExercise PhysiologyGerontology and Public HealthGerontology Research CenterSchool of WellbeingTekijänoikeudet
© 2020 by the American College of Sports Medicine
Purpose
Exercise and aging may modulate muscle protein homeostasis and autophagy, but few studies examine highly-trained middle-aged or older individuals. This study elucidated the effects of a new long-term training stimulus on markers of muscle autophagy and unfolded protein response (UPR) and on sprint running performance in masters sprinters.
Methods
Thirty-two male competitive sprinters (aged 40–76 years) were randomly divided into experimental (EX) and control (CTRL) groups. The EX training program was a combination of heavy and explosive strength and sprint exercises aimed at improving sprint performance. Fifteen and thirteen participants completed the 20-week intervention period in EX and CTRL, respectively. The latter were told to continue their routine exercises. Key protein markers were analyzed by western blotting from vastus lateralis (VL) muscle biopsies. Muscle thickness of VL was analyzed by ultrasonography and sprint performance by a 60-meter running test.
Results
EX induced improvement in 60-meter sprint performance when compared to controls (time x group, P = 0.003) without changes in VL muscle thickness. Content of lipidated microtubule-associated protein 1A/1B-light chain 3 (LC3-II) increased in EX (P = 0.022) suggesting increased autophagosome content. Additionally, an autophagosome clearance marker sequestosome 1 (p62) decreased in EX (P = 0.006). Markers of UPR selectively modulated with decreases (e.g. ATF4, P = 0.003) and increases (e.g. EIF2α, P = 0.019) observed in EX.
Conclusions
These findings suggest that a new intensive training stimulus that combines strength training with sprint training may increase muscle autophagosome content in a basal state without any evidence of impaired autophagosome clearance in masters sprinters. Simultaneously, the combined training may have a selective effect on the content of UPR signaling components.
...
Julkaisija
Lippincott Williams & WilkinsISSN Hae Julkaisufoorumista
0195-9131Asiasanat
Julkaisu tutkimustietojärjestelmässä
https://converis.jyu.fi/converis/portal/detail/Publication/35097308
Metadata
Näytä kaikki kuvailutiedotKokoelmat
- Liikuntatieteiden tiedekunta [3141]
Rahoittaja(t)
Suomen AkatemiaRahoitusohjelmat(t)
Akatemiatutkija, SALisätietoja rahoituksesta
This study was supported by the grants from the Academy of Finland (275922) to J.J.H., the Finnish Ministry of Education and Culture, the Finnish Cultural Foundation, Peurunka-Medical Rehabilitation Foundation, Ellen and Artturi Nyyssönen Foundation, Academy of Finland (250683) and Juho Vainio Foundation to M.T.K. and H.S., and the Finnish Cultural Foundation to J.H.Lisenssi
Samankaltainen aineisto
Näytetään aineistoja, joilla on samankaltainen nimeke tai asiasanat.
-
Greater maintenance of bone mineral content in male than female athletes and in sprinting and jumping than endurance athletes : a longitudinal study of bone strength in elite masters athletes
Ireland, Alex; Mittag, Uwe; Degens, Hans; Felsenberg, Dieter; Ferretti, José L.; Heinonen, Ari; Koltai, Erika; Korhonen, Marko T.; McPhee, Jamie S.; Mekjavic, Igor; Piasecki, Jessica; Pisot, Rado; Radak, Zsolt; Simunic, Bostjan; Suominen, Harri; Wilks, Désirée C.; Winwood, Keith; Rittweger, Jörn (Springer, 2020)We investigated longitudinal changes in tibia bone strength in master power (jumping and sprinting) and endurance (distance) athletes of both sexes. Bone mass but not cross-sectional moment of inertia was better maintained ... -
Autophagy is induced by resistance exercise in young men but unfolded protein response is induced regardless of age
Hentilä, Jaakko; Ahtiainen, Juha; Paulsen, Gøran; Raastad, Truls; Häkkinen, Keijo; Mero, Antti; Hulmi, Juha (Wiley-Blackwell Publishing Ltd., 2018)Aim Autophagy and unfolded protein response (UPR) appear to be important for skeletal muscle homoeostasis and may be altered by exercise. Our aim was to investigate the effects of resistance exercise and training on ... -
Regular strength and sprint training counteracts bone aging : a 10‐year follow‐up in male masters athletes
Suominen, Tuuli H.; Alén, Markku; Törmäkangas, Timo; Degens, Hans; Rittweger, Jörn; Heinonen, Ari; Suominen, Harri; Korhonen, Marko T. (Wiley-Blackwell, 2021)Cross‐sectional and interventional studies suggest that high‐intensity strength and impact‐type training provide a powerful osteogenic stimulus even in old age. However, longitudinal evidence on the ability of high‐intensity ... -
Body composition in male lifelong trained strength, sprint and endurance athletes and healthy age-matched controls
Walker, Simon; von Bonsdorff, Mikaela; Cheng, Sulin; Häkkinen, Keijo; Bondarev, Dmitriy; Heinonen, Ari; Korhonen, Marko T. (Frontiers Media SA, 2023)Introduction: Aging involves many physiological processes that lead to decreases in muscle mass and increases in fat mass. While regular exercise can counteract such negative body composition outcomes, masters athletes ... -
Amino acid metabolism in athletes and non-athletes : with special reference to amino acid concentrations and protein balance in exercise, training and aging
Pitkänen, Hannu (University of Jyväskylä, 2002)Hannu Pitkänen tutki väitöskirjassaan fyysisen harjoituksen, pitkän harjoitusjakson ja ikääntymisen aiheuttamia vaikutuksia elimistön aminohappo- ja proteiiniaineenvaihduntaan. Ihmisen elämälle välttämätön ravintoaine, ...
Ellei toisin mainittu, julkisesti saatavilla olevia JYX-metatietoja (poislukien tiivistelmät) saa vapaasti uudelleenkäyttää CC0-lisenssillä.