Literature DB >> 15718261

5'AMP activated protein kinase expression in human skeletal muscle: effects of strength training and type 2 diabetes.

Jørgen F P Wojtaszewski1, Jesper B Birk, Christian Frøsig, Mads Holten, Henriette Pilegaard, Flemming Dela.   

Abstract

Strength training enhances insulin sensitivity and represents an alternative to endurance training for patients with type 2 diabetes (T2DM). The 5'AMP-activated protein kinase (AMPK) may mediate adaptations in skeletal muscle in response to exercise training; however, little is known about adaptations within the AMPK system itself. We investigated the effect of strength training and T2DM on the isoform expression and the heterotrimeric composition of the AMPK in human skeletal muscle. Ten patients with T2DM and seven healthy subjects strength trained (T) one leg for 6 weeks, while the other leg remained untrained (UT). Muscle biopsies were obtained before and after the training period. Basal AMPK activity and protein/mRNA expression of both catalytic (alpha1 and alpha2) and regulatory (beta1, beta2, gamma1, gamma2a, gamma2b and gamma3) AMPK isoforms were independent of T2DM, whereas the protein content of alpha1 (+16%), beta2 (+14%) and gamma1 (+29%) was higher and the gamma3 content was lower (-48%) in trained compared with untrained muscle (all P < 0.01). The majority of alpha protein co-immunoprecipitated with beta2 and alpha2/beta2 accounted for the majority of these complexes. gamma3 was only associated with alpha2 and beta2 subunits, and accounted for approximately 20% of all alpha2/beta2 complexes. The remaining alpha2/beta2 and the alpha1/beta2 complexes were associated with gamma1. The trimer composition was unaffected by T2DM, whereas training induced a shift from gamma3- to gamma1-containing trimers. The data question muscular AMPK as a primary cause of T2DM whereas the maintained function in patients with T2DM makes muscular AMPK an obvious therapeutic target. In human skeletal muscle only three of 12 possible AMPK trimer combinations exist, and the expression of the subunit isoforms is susceptible to moderate strength training, which may influence metabolism and improve energy homeostasis in trained muscle.

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Year:  2005        PMID: 15718261      PMCID: PMC1464439          DOI: 10.1113/jphysiol.2005.082669

Source DB:  PubMed          Journal:  J Physiol        ISSN: 0022-3751            Impact factor:   5.182


  47 in total

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2.  Expression of the AMP-activated protein kinase beta1 and beta2 subunits in skeletal muscle.

Authors:  Z Chen; J Heierhorst; R J Mann; K I Mitchelhill; B J Michell; L A Witters; G S Lynch; B E Kemp; D Stapleton
Journal:  FEBS Lett       Date:  1999-10-29       Impact factor: 4.124

3.  AMPK signaling in contracting human skeletal muscle: acetyl-CoA carboxylase and NO synthase phosphorylation.

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4.  Exercise induces isoform-specific increase in 5'AMP-activated protein kinase activity in human skeletal muscle.

Authors:  N Fujii; T Hayashi; M F Hirshman; J T Smith; S A Habinowski; L Kaijser; J Mu; O Ljungqvist; M J Birnbaum; L A Witters; A Thorell; L J Goodyear
Journal:  Biochem Biophys Res Commun       Date:  2000-07-14       Impact factor: 3.575

5.  Metabolic stress and altered glucose transport: activation of AMP-activated protein kinase as a unifying coupling mechanism.

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Journal:  Diabetes       Date:  2000-04       Impact factor: 9.461

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10.  Isoform-specific and exercise intensity-dependent activation of 5'-AMP-activated protein kinase in human skeletal muscle.

Authors:  J F Wojtaszewski; P Nielsen; B F Hansen; E A Richter; B Kiens
Journal:  J Physiol       Date:  2000-10-01       Impact factor: 5.182

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Review 2.  The molecular bases of training adaptation.

Authors:  Vernon G Coffey; John A Hawley
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Review 3.  Metabolic syndrome and insulin resistance: underlying causes and modification by exercise training.

Authors:  Christian K Roberts; Andrea L Hevener; R James Barnard
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4.  Acute exercise and physiological insulin induce distinct phosphorylation signatures on TBC1D1 and TBC1D4 proteins in human skeletal muscle.

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Journal:  J Physiol       Date:  2013-11-18       Impact factor: 5.182

5.  Naturally occurring R225W mutation of the gene encoding AMP-activated protein kinase (AMPK)gamma(3) results in increased oxidative capacity and glucose uptake in human primary myotubes.

Authors:  S A Crawford; S R Costford; C Aguer; S C Thomas; R A deKemp; J N DaSilva; D Lafontaine; M Kendall; R Dent; R S B Beanlands; R McPherson; M-E Harper
Journal:  Diabetologia       Date:  2010-05-15       Impact factor: 10.122

6.  Human muscle fibre type-specific regulation of AMPK and downstream targets by exercise.

Authors:  Dorte E Kristensen; Peter H Albers; Clara Prats; Otto Baba; Jesper B Birk; Jørgen F P Wojtaszewski
Journal:  J Physiol       Date:  2015-02-27       Impact factor: 5.182

7.  Methotrexate promotes glucose uptake and lipid oxidation in skeletal muscle via AMPK activation.

Authors:  Sergej Pirkmajer; Sameer S Kulkarni; Robby Z Tom; Fiona A Ross; Simon A Hawley; D Grahame Hardie; Juleen R Zierath; Alexander V Chibalin
Journal:  Diabetes       Date:  2014-10-22       Impact factor: 9.461

8.  A muscle-specific UBE2O/AMPKα2 axis promotes insulin resistance and metabolic syndrome in obesity.

Authors:  Isabelle K Vila; Mi Kyung Park; Stephanie Rebecca Setijono; Yixin Yao; Hyejin Kim; Pierre-Marie Badin; Sekyu Choi; Vihang Narkar; Sung-Woo Choi; Jongkyeong Chung; Cedric Moro; Su Jung Song; Min Sup Song
Journal:  JCI Insight       Date:  2019-07-11

9.  Discovery of MK-8722: A Systemic, Direct Pan-Activator of AMP-Activated Protein Kinase.

Authors:  Danqing Feng; Tesfaye Biftu; F Anthony Romero; Ahmet Kekec; James Dropinski; Andrew Kassick; Shiyao Xu; Marc M Kurtz; Anantha Gollapudi; Qing Shao; Xiaodong Yang; Ku Lu; Gaochao Zhou; Daniel Kemp; Robert W Myers; Hong-Ping Guan; Maria E Trujillo; Cai Li; Ann Weber; Iyassu K Sebhat
Journal:  ACS Med Chem Lett       Date:  2017-12-01       Impact factor: 4.345

10.  Nitric oxide increases cyclic GMP levels, AMP-activated protein kinase (AMPK)alpha1-specific activity and glucose transport in human skeletal muscle.

Authors:  A S Deshmukh; Y C Long; T de Castro Barbosa; H K R Karlsson; S Glund; W J Zavadoski; E M Gibbs; H A Koistinen; H Wallberg-Henriksson; J R Zierath
Journal:  Diabetologia       Date:  2010-03-27       Impact factor: 10.122

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