The effect of acute (60 minute) insulin stimulation upon human skeletal muscle glycogen synthase and protein phosphatase-1 in non-insulin-dependent diabetic patients and control subjects

被引:7
作者
Barriocanal, LA [1 ]
Borthwick, AC [1 ]
Stewart, M [1 ]
Wells, A [1 ]
Hurel, SJ [1 ]
Yeaman, SJ [1 ]
Taylor, R [1 ]
机构
[1] UNIV NEWCASTLE UPON TYNE,SCH MED,DEPT MED,NEWCASTLE TYNE NE2 4HH,TYNE & WEAR,ENGLAND
关键词
non-insulin-dependent diabetes mellitus; glycogen synthase; protein phosphatase-1; insulin action; insulin sensitivity;
D O I
10.1111/j.1464-5491.1995.tb00429.x
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Previous studies have established that activation of muscle glycogen synthase (GS) is abnormal in non-insulin-dependent diabetes mellitus (NIDDM). Insulin-mediated activation of GS depends upon protein phosphatase-l (PP1), which dephosphorylates the relevant sites of GS. In order to determine whether defects in PP1 activation cause subnormal activation of CS or whether PP1 activation itself is normal, we administered a short insulin infusion to 8 NIDDM subjects and 8 healthy controls matched for gender, age, and body mass index (BMI). GS fractional activity and PP1 activity were determined in biopsies taken from the gastrocnemius muscle before and after 60 min insulin infusion (0.1 U kg h(-1)). In the NIDDM group, muscle GS fractional activity was 6.8 +/- 1.6 and 10.0 +/- 1.5% (mean +/- SEM) (p = 0.11) before and after insulin infusion. in the control group, muscle GS fractional activity increased from 7.3 +/- 2.0 to 13.3 +/- 2.7% (p < 0.02). PPI activity had returned towards basal levels after insulin infusion; NIDDM group 156 +/- 24.7 to 184.1 +/- 28.1 U mg(-1); control group 220.8 +/- 30.1 to 233.8 +/- 29.8 U m(-1). In the NIDDM group there was a positive correlation between the increases in GS fractional activity and PP1 activity following insulin stimulation r = 0.77; p < 0.025). These data indicate that in vivo insulin-dependent activation of muscle PP1 is transient in normal subjects but is delayed in NIDDM. The defect in GS activation in NIDDM is likely to be proximal to PP1 in the pathway of transmission of the insulin signal.
引用
收藏
页码:1110 / 1115
页数:6
相关论文
共 29 条
[1]  
DeFronzo RA, Bonadonna RC, Ferrannini E., Pathogenesis of NIDDM. A balanced overview, Diabetes Care, 15, pp. 318-368, (1992)
[2]  
Bogardus C., Lillioja S., Stone K., Mott DM, Correlation between muscle glycogen synthase activity and in vivo insulin action in man, J Clin Invest, 73, pp. 1185-1190, (1984)
[3]  
Thorburn AW, Gumbiner B., Bulacan F., Brechtel G., Henry RR, Multiple defects in muscle glycogen synthase activity contribute to reduced glycogen synthesis in non‐insulin dependent diabetes mellitus, J Clin Invest, 87, pp. 489-495, (1991)
[4]  
Golay A., DeFronzo RA, Ferrannini E., Simonson DC, Thorin D., Acheson K., Et al., Oxidative and non‐oxidative glucose metabolism in non‐obese type 2 (non‐insulin‐dependent) diabetic patients, Diabetologia, 31, pp. 585-591, (1988)
[5]  
Shulman GI, Rothman DL, Jue T., Stein P., DeFronzo RA, Shulman RG, Quantitation of muscle glycogen synthase in normal subjects and subjects with non‐insulin‐dependent diabetes by <sup>13</sup>C nuclear magnetic resonance spectroscopy, N Engl J Med, 322, pp. 223-228, (1990)
[6]  
Danforth WH, Glycogen synthase activity in skeletal muscle: interconversion of two forms and control of glycogen synthesis, J Biol Chem, 2, pp. 588-593, (1965)
[7]  
Cohen P., Muscle glycogen synthase, The Enzymes, 17, pp. 461-497, (1986)
[8]  
Dent P., Lavoinne A., Nakielny S., Caudwell FB, Watt P., Cohen P., The molecular mechanism by which insulin stimulates glycogen synthesis in mammalian skeletal muscle, Nature (Lond), 348, pp. 302-308, (1990)
[9]  
Ingebritsen TS, Cohen P., Protein phosphatase: properties and role in cellular regulation, Science, 221, pp. 331-338, (1983)
[10]  
Stalmans W., Bollen M., Mvumbi L., Control of glycogen synthesis in health and disease, Diabetes/Metab Rev, 3, pp. 127-161, (1987)