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胰岛素对成年大鼠分离心肌细胞中葡萄糖转运系统的作用。

Insulin action on the glucose transport system in isolated cardiocytes from adult rat.

作者信息

Eckel J, Pandalis G, Reinauer H

出版信息

Biochem J. 1983 May 15;212(2):385-92. doi: 10.1042/bj2120385.

Abstract

Calcium-tolerant myocytes from the adult rat heart were used to study the effects of insulin on the kinetics of myocardial 3-0-methylglucose transport at 37 degrees C. Insulin increased the initial velocity of sugar influx without affecting the equilibrium uptake values. Maximal stimulation averaged 50-80%, with a half-maximal response at an insulin concentration of 0.1 nM and maximal stimulation occurring at 1 nM. The onset of insulin action was preceded by a lag-phase of 20 s, reaching maximal action by 60 s. The Vmax. of the glucose transport system was increased from 160 to 287 nmol/min per 10(6) cells with an unaltered affinity. Neither extracellular nor intracellular calcium was found to be involved in the stimulatory action of insulin. Removal of intracellular magnesium resulted in a loss of insulin action. This study demonstrates that activation of the cardiac glucose transporter by insulin is due exclusively to an increase in the maximal velocity representing one of the very early effects of insulin on myocardial metabolism. The data suggest involvement of magnesium in the transmission of the insulin signal.

摘要

采用成年大鼠心脏的耐钙心肌细胞,研究胰岛素在37℃时对心肌3 - O - 甲基葡萄糖转运动力学的影响。胰岛素增加了糖流入的初始速度,而不影响平衡摄取值。最大刺激平均为50 - 80%,在胰岛素浓度为0.1 nM时出现半数最大反应,在1 nM时出现最大刺激。胰岛素作用的起始之前有20秒的延迟期,60秒时达到最大作用。葡萄糖转运系统的Vmax从每10(6)个细胞160 nmol/分钟增加到287 nmol/分钟,亲和力未改变。未发现细胞外钙和细胞内钙参与胰岛素的刺激作用。去除细胞内镁导致胰岛素作用丧失。本研究表明,胰岛素对心脏葡萄糖转运体的激活完全是由于最大速度的增加,这代表了胰岛素对心肌代谢的非常早期的作用之一。数据表明镁参与了胰岛素信号的传递。

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