Exercise-induced overexpression of key regulatory proteins involved in glucose uptake and metabolism in tetraplegic persons:: molecular mechanism for improved glucose homeostasis

被引:91
作者
Hjeltnes, N
Galuska, D
Björnholm, M
Aksnes, AK
Lannem, A
Zierath, JR
Wallberg-Henriksson, H [1 ]
机构
[1] Karolinska Hosp, Dept Clin Physiol, S-17176 Stockholm, Sweden
[2] Sunnaas Hosp, N-1450 Nesoddtangen, Norway
关键词
GLUT4; glycogen synthase; hexokinase; phosphofructokinase; skeletal muscle fiber type; glucose transport; insulin resistance;
D O I
10.1096/fasebj.12.15.1701
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Complete spinal cord lesion leads to profound metabolic abnormalities and striking changes in muscle morphology. Here we assess the effects of electrically stimulated leg cyclic; (ESLC) on whole body insulin sensitivity, skeletal muscle glucose metabolism, and muscle fiber morphology in five tetraplegic subjects with complete C-5-C-7 lesions. Physical training (seven ESLC sessions/wk for 8 wk) increased whole body insulin-stimulated glucose uptake by 33+/-13%, concomitant with a 2.1-fold increase in insulin-stimulated (100 mu U/ml) 3-O-methylglucose transport in isolated vastus lateralis muscle. Physical training led to a marked increase in protein expression of GLUT4 (378+/-85%), glycogen synthase (526+/-146%), and hexokinase II (204+/-47%) in vastus lateralis muscle, whereas phosphofructokinase expression (282+/-97%) was not significantly changed. Hexokinase II activity was significantly increased, whereas activity of phosphofructokinase, glycogen synthase, and citrate synthase was not changed after training. Muscle fiber type distribution and fiber area were markedly altered compared to able-bodied subjects before ESLC training, with no change noted in either parameter after ECSL training. In conclusion, muscle contraction improves insulin action on whole body and cellular glucose uptake in cervical cord-injured persons through a major increase in protein expression of key genes involved in the regulation of glucose metabolism. Furthermore, improvements in insulin action on glucose metabolism are independent of changes in muscle fiber type distribution.
引用
收藏
页码:1701 / 1712
页数:12
相关论文
共 70 条
[41]  
ODOHERTY RM, 1994, AM J PHYSIOL, V266, pE171
[42]   ACTIVITIES OF FRUCTOSE 1,6-DIPHOSPHATASE PHOSPHOFRUCTOKINASE AND PHOSPHOENOLPYRUVATE CARBOXYKINASE IN WHITE MUSCLE AND RED MUSCLE [J].
OPIE, LH ;
NEWSHOLME, EA .
BIOCHEMICAL JOURNAL, 1967, 103 (02) :391-+
[43]   EVIDENCE AGAINST ALTERED EXPRESSION OF GLUT1 OR GLUT4 IN SKELETAL-MUSCLE OF PATIENTS WITH OBESITY OR NIDDM [J].
PEDERSEN, O ;
BAK, JF ;
ANDERSEN, PH ;
LUND, S ;
MOLLER, DE ;
FLIER, JS ;
KAHN, BB .
DIABETES, 1990, 39 (07) :865-870
[44]  
PETROFSKY J S, 1984, Journal of Clinical Engineering, V9, P13
[45]   EFFECTS OF LONG-TERM ELECTRICAL-STIMULATION ON SOME CONTRACTILE AND METABOLIC CHARACTERISTICS OF FAST RABBIT MUSCLES [J].
PETTE, D ;
SMITH, ME ;
STAUDTE, HW ;
VRBOVA, G .
PFLUGERS ARCHIV-EUROPEAN JOURNAL OF PHYSIOLOGY, 1973, 338 (03) :257-272
[46]  
PLOUG T, 1990, AM J PHYSIOL, V259, P778
[47]   OVEREXPRESSION OF GLUT4 PROTEIN IN MUSCLE INCREASES BASAL AND INSULIN-STIMULATED WHOLE-BODY GLUCOSE DISPOSAL IN CONSCIOUS MICE [J].
REN, JM ;
MARSHALL, BA ;
MUECKLER, MM ;
MCCALEB, M ;
AMATRUDA, JM ;
SHULMAN, GI .
JOURNAL OF CLINICAL INVESTIGATION, 1995, 95 (01) :429-432
[48]  
REN JM, 1994, J BIOL CHEM, V269, P14396
[49]   ENHANCED MUSCLE GLUCOSE-METABOLISM AFTER EXERCISE - MODULATION BY LOCAL FACTORS [J].
RICHTER, EA ;
GARETTO, LP ;
GOODMAN, MN ;
RUDERMAN, NB .
AMERICAN JOURNAL OF PHYSIOLOGY, 1984, 246 (06) :E476-E482
[50]   MUSCLE GLUCOSE-METABOLISM FOLLOWING EXERCISE IN THE RAT - INCREASED SENSITIVITY TO INSULIN [J].
RICHTER, EA ;
GARETTO, LP ;
GOODMAN, MN ;
RUDERMAN, NB .
JOURNAL OF CLINICAL INVESTIGATION, 1982, 69 (04) :785-793