Effects of epinephrine on lipid metabolism in resting skeletal muscle

被引:58
作者
Peters, SJ [1 ]
Dyck, DJ
Bonen, A
Spriet, LL
机构
[1] Univ Guelph, Dept Human Biol & Nutr Sci, Guelph, ON N1G 2W1, Canada
[2] Univ Waterloo, Dept Kinesiol, Waterloo, ON N2L 3G1, Canada
来源
AMERICAN JOURNAL OF PHYSIOLOGY-ENDOCRINOLOGY AND METABOLISM | 1998年 / 275卷 / 02期
关键词
triacylglycerol; dual-label pulse chase; phospholipid; diacylglycerol; fatty acids; hormone-sensitive lipase;
D O I
10.1152/ajpendo.1998.275.2.E300
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
The effects of physiological (0, 0.1, 2.5, and 10 nM) and pharmacological (200 nM) epinephrine concentrations on resting skeletal muscle lipid metabolism were investigated with the use of incubated rat epitrochlearis (EPT), flexor digitorum brevis (FDB), and soleus (SOL) muscles. Muscles were chosen to reflect a range of oxidative capacities: SOL > EPT > FDB. The muscles were pulsed with [1-C-14]palmitate and chased with [9,10-H-3]palmitate. Incorporation and loss of the labeled palmitate from the triacylglycerol pool (as well as mono- and diacylglycerol, phospholipid, and fatty acid pools) permitted the simultaneous estimation of lipid hydrolysis and synthesis. Endogenous and exogenous fat oxidation was quantified by (CO2)-C-14 and (H2O)-H-3 production, respectively. Triacylglycerol breakdown was elevated above control at all epinephrine concentrations in the oxidative SOL muscle, at 2.5 and 200 nM (at 10 nM, P = 0.066) in the FDB, and only at 200 nM epinephrine in the EPT. Epinephrine stimulated glycogen breakdown in the EPT at all concentrations but only at 10 and 200 nM in the FDB and had no effect in the SOL. We further characterized muscle lipid hydrolysis potential and measured total hormone-sensitive Lipase content by Western blotting (SOL > FDB > EPT). This study demonstrated that physiological levels of epinephrine cause measurable increases in triacylglycerol hydrolysis at rest in oxidative but not in glycolytic muscle, with no change in the rate of lipid synthesis or oxidation. Furthermore, epinephrine caused differential stimulation of carbohydrate and fat metabolism in glycolytic vs, oxidative muscle. Epinephrine preferentially stimulated glycogen breakdown over triacylglycerol hydrolysis in the glycolytic EPT muscle. Conversely, in the oxidative SOL muscle, epinephrine caused an increase in endogenous lipid hydrolysis over glycogen breakdown.
引用
收藏
页码:E300 / E309
页数:10
相关论文
共 45 条
[1]  
ABUMRAD NA, 1980, J LIPID RES, V21, P149
[2]  
ABUMRAD NA, 1978, J LIPID RES, V19, P423
[3]  
ARMSTRONG RB, 1984, AM J ANAT, V171, P259, DOI 10.1002/aja.1001710303
[4]  
ARNER P, 1988, DIABETES METAB REV, V4, P507
[5]  
Bergmeyer H.V., 1974, Methods of Enzymatic Analysis
[6]  
BOYER PD, 1983, ENZYMES, V16, P87
[7]   Triacylglycerol synthesis in the different skeletal muscle fiber sections of the rat [J].
Budohoski, L ;
Gorski, J ;
Nazar, K ;
KaciubaUscilko, H ;
Terjung, RL .
AMERICAN JOURNAL OF PHYSIOLOGY-ENDOCRINOLOGY AND METABOLISM, 1996, 271 (03) :E574-E581
[8]  
CARLSEN RC, 1970, CAN J PHYSL PHARM, V63, P369
[9]   REGULATION OF GLYCOGENOLYSIS IN HUMAN-MUSCLE AT REST AND DURING EXERCISE [J].
CHASIOTIS, D ;
SAHLIN, K ;
HULTMAN, E .
JOURNAL OF APPLIED PHYSIOLOGY, 1982, 53 (03) :708-715
[10]   EFFECTS OF BETA-1-BETA-2-BLOCKADE VS BETA-1+BETA-2-BLOCKADE ON EXERCISE ENDURANCE AND MUSCLE METABOLISM IN HUMANS [J].
CLEROUX, J ;
VANNGUYEN, P ;
TAYLOR, AW ;
LEENEN, FHH .
JOURNAL OF APPLIED PHYSIOLOGY, 1989, 66 (02) :548-554