Functional Role of Neuroendocrine-Specific Protein-Like 1 in Membrane Translocation of GLUT4

被引:18
作者
Ikemoto, Takaaki [1 ]
Hosoya, Takamitsu [2 ,3 ]
Takata, Kumi [1 ]
Aoyama, Hiroshi [4 ]
Hiramatsu, Toshiyuki [2 ,3 ]
Onoe, Hirotaka [1 ]
Suzuki, Masaaki [5 ]
Endo, Makoto [6 ]
机构
[1] RIKEN Ctr Mol Imaging Sci, Funct Probe Res Lab, Kobe, Hyogo, Japan
[2] Tokyo Inst Technol, Dept Biol Informat, Grad Sch Biosci & Biotechnol, Yokohama, Kanagawa 227, Japan
[3] Japan Sci & Technol Agcy, SORST, Yokohama, Kanagawa, Japan
[4] Univ Tokyo, Inst Mol & Cellular Biosci, Tokyo, Japan
[5] RIKEN Ctr Mol Imaging Sci, Mol Imaging Med Chem Lab, Kobe, Hyogo, Japan
[6] Saitama Med Univ, Fac Hlth & Med Care, Saitama, Japan
关键词
PHYSIOLOGICAL CA2+ RELEASE; DANTROLENE-BINDING-SITE; SKELETAL-MUSCLE; SARCOPLASMIC-RETICULUM; GLUCOSE-TRANSPORT; INSULIN; AMPK; SARCOLEMMA; GENE; PHOSPHORYLATION;
D O I
10.2337/db09-0756
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
OBJECTIVE-In skeletal muscles, dantrolene inhibits the exercise-induced membrane translocation of GLUT4. It has been postulated that the inhibitory action of dantrolene on Ca2+ release from the sarcoplasmic reticulum (SR) causes inhibition of exercise-induced glucose uptake; however, the precise mechanism has not been adequately studied. RESEARCH DESIGN AND METHODS-We discovered that dantrolene can bind to skeletal-type neuroendocrine-specific protein-like 1 (sk-NSP11) with photoreactive dantrolene derivatives. In sk-NSP11-deficient muscles, we examined the change in glucose uptake and the membrane translocation of GLUT4. In addition, we examined the change in blood glucose and also measured the glycogen level in both isolated and in situ skeletal muscles after electrical stimulation using our mutant mouse. RESULTS-In sk-NSP11-deficient muscles, exercise-induced glucose uptake was totally abolished with no change in insulin-induced glucose uptake. The Ca2+ release mechanism and its inhibition by dantrolene were completely preserved in these muscles. The expression of GLUT4 in the mutant muscles also appeared unchanged. Confocal imaging and results using the membrane isolation method showed that exercise/contraction did not enhance GLUT4 translocation in these sk-NSP11-deficient muscles under conditions of adequate muscle glycogen consumption. The blood glucose level in normal Juice was reduced by electrical stimulation of the hind limbs, but that in mutant mice was unchanged. CONCLUSIONS-sk-NSP11 is a novel dantrolene receptor that plays an important role in membrane translocation of GLUT4 induced by contraction/exercise. The 23-kDa sk-NSP11 may also be involved in the regulation of glucose levels in the whole body. Diabetes 58:2802-2812, 2009
引用
收藏
页码:2802 / 2812
页数:11
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