Regulation of glucose and glycogen metabolism during and after exercise

被引:209
作者
Jensen, Thomas E. [1 ]
Richter, Erik A. [1 ]
机构
[1] Univ Copenhagen, Dept Exercise & Sport Sci, Mol Physiol Grp, Copenhagen, Denmark
来源
JOURNAL OF PHYSIOLOGY-LONDON | 2012年 / 590卷 / 05期
关键词
ACTIVATED PROTEIN-KINASE; RAT SKELETAL-MUSCLE; P38; MAP-KINASE; INSULIN-RESISTANCE; ENHANCES SENSITIVITY; INHIBITOR SB203580; SOLEUS MUSCLE; TRANSPORT; SYNTHASE; AMPK;
D O I
10.1113/jphysiol.2011.224972
中图分类号
Q189 [神经科学];
学科分类号
071006 [神经生物学];
摘要
Utilization of carbohydrate in the form of intramuscular glycogen stores and glucose delivered from plasma becomes an increasingly important energy substrate to the working muscle with increasing exercise intensity. This review gives an update on the molecular signals by which glucose transport is increased in the contracting muscle followed by a discussion of glycogen mobilization and synthesis by the action of glycogen phosphorylase and glycogen synthase, respectively. Finally, this review deals with the signalling relaying the well-described increased sensitivity of glucose transport to insulin in the post-exercise period which can result in an overshoot of intramuscular glycogen resynthesis post exercise (glycogen supercompensation).
引用
收藏
页码:1069 / 1076
页数:8
相关论文
共 59 条
[1]
Reduction of insulin-stimulated glucose uptake in L6 myotubes by the protein kinase inhibitor SB203580 is independent of p38MAPK activity [J].
Antonescu, CN ;
Huang, C ;
Niu, W ;
Liu, Z ;
Eyers, PA ;
Heidenreich, KA ;
Bilan, PJ ;
Klip, A .
ENDOCRINOLOGY, 2005, 146 (09) :3773-3781
[2]
The muscle-specific protein phosphatase PP1G/RGL(GM) is essential for activation of glycogen synthase by exercise [J].
Aschenbach, WG ;
Suzuki, Y ;
Breeden, K ;
Prats, C ;
Hirshman, MF ;
Dufresne, SD ;
Sakamoto, K ;
Vilardo, PG ;
Steele, M ;
Kim, JH ;
Jing, SL ;
Goodyear, LJ ;
DePaoli-Roach, AA .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2001, 276 (43) :39959-39967
[3]
Predominant α2/β2/γ3 AMPK activation during exercise in human skeletal muscle [J].
Birk, J. B. ;
Wojtaszewski, J. F. P. .
JOURNAL OF PHYSIOLOGY-LONDON, 2006, 577 (03) :1021-1032
[4]
A myosin II ATPase inhibitor reduces force production, glucose transport, and phosphorylation of AMPK and TBC1D1 in electrically stimulated rat skeletal muscle [J].
Blair, David R. ;
Funai, Katsuhiko ;
Schweitzer, George G. ;
Cartee, Gregory D. .
AMERICAN JOURNAL OF PHYSIOLOGY-ENDOCRINOLOGY AND METABOLISM, 2009, 296 (05) :E993-E1002
[5]
Allosteric Regulation of Glycogen Synthase Controls Glycogen Synthesis in Muscle [J].
Bouskila, Michale ;
Hunter, Roger W. ;
Ibrahim, Adel F. M. ;
Delattre, Lucie ;
Peggie, Mark ;
van Diepen, Janna A. ;
Voshol, Peter J. ;
Jensen, Jorgen ;
Sakamoto, Kei .
CELL METABOLISM, 2010, 12 (05) :456-466
[6]
Role of Akt substrate of 160 kDa in insulin-stimulated and contraction-stimulated glucose transport [J].
Cartee, Gregory D. ;
Wojtaszewski, Jorgen F. P. .
APPLIED PHYSIOLOGY NUTRITION AND METABOLISM, 2007, 32 (03) :557-566
[7]
Exercise and Insulin: Convergence or Divergence at AS160 and TBC1D1? [J].
Cartee, Gregory D. ;
Funai, Katsuhiko .
EXERCISE AND SPORT SCIENCES REVIEWS, 2009, 37 (04) :188-195
[8]
Clustering of GLUT4, TUG, and RUVBL2 protein levels correlate with myosin heavy chain isoform pattern in skeletal muscles, but AS160 and TBC1D1 levels do not [J].
Castorena, Carlos M. ;
MacKrell, James G. ;
Bogan, Jonathan S. ;
Kanzaki, Makoto ;
Cartee, Gregory D. .
JOURNAL OF APPLIED PHYSIOLOGY, 2011, 111 (04) :1106-1117
[9]
Stretch-stimulated glucose uptake in skeletal muscle is mediated by reactive oxygen species and p38 MAP-kinase [J].
Chambers, Melissa A. ;
Moylan, Jennifer S. ;
Smith, Jeffrey D. ;
Goodyear, Laurie J. ;
Reid, Michael B. .
JOURNAL OF PHYSIOLOGY-LONDON, 2009, 587 (13) :3363-3373
[10]
DANFORTH WH, 1965, J BIOL CHEM, V240, P588