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胰岛素对分离的大鼠附睾脂肪细胞中己糖转运的最大反应速度(Vmax)和米氏常数(Km)值影响的重新评估。

Reassessment of insulin effects on the Vmax and Km values of hexose transport in isolated rat epididymal adipocytes.

作者信息

Toyoda N, Flanagan J E, Kono T

出版信息

J Biol Chem. 1987 Feb 25;262(6):2737-45.

PMID:3546294
Abstract

Effects of insulin on the kinetic parameters of hexose transport in rat epididymal adipocytes were re-examined. The transport activity was assessed by measuring the rate of uptake of 3-O-[3H]methyl-D-glucose (MeGlc) under equilibrium exchange and zero-trans conditions. The incubation was carried out at 37 degrees C in an infant incubator. During the incubation, the cell suspension (25%, v/v, in a total volume of 48 microliter) was mechanically swirled at a rate of 600 rpm (r = 2 mm). The swirling facilitated the rapid uptake of MeGlc without stimulating the basal transport activity by "mechanical agitation". The basal and insulin-treated cells were incubated under identical conditions, except for the length of the incubation period. The incubation was terminated by the addition of 350 microliters of 1 mM phloretin, which inhibited transport in approximately 0.06 s. The time course of MeGlc uptake was consistent with the view that the process was a multiple-phase reaction. The initial phase of the reaction was completed when the intracellular distribution space of MeGlc was approximately 1% of the total cell volume. Insulin (10 nM) increased the Vmax value of MeGlc uptake 16-fold in equilibrium exchange experiments and 18-fold in zero-trans experiments. At the same time, the hormone decreased the Km value of MeGlc uptake from 11.7 to 5.4 mM in equilibrium exchange experiments and from 9.7 to 4.8 mM in zero-trans experiments. It is concluded that the major effect of insulin on MeGlc uptake is to increase the Vmax value, but the hormone has the additional effect of lowering the apparent Km value.

摘要

重新研究了胰岛素对大鼠附睾脂肪细胞中己糖转运动力学参数的影响。通过在平衡交换和零转运条件下测量3-O-[3H]甲基-D-葡萄糖(MeGlc)的摄取速率来评估转运活性。在婴儿培养箱中于37℃进行孵育。孵育期间,将细胞悬液(25%,v/v,总体积为48微升)以600转/分钟的速度(r = 2毫米)进行机械涡旋。这种涡旋促进了MeGlc的快速摄取,而不会通过“机械搅拌”刺激基础转运活性。除孵育时间长度外,基础细胞和胰岛素处理的细胞在相同条件下孵育。通过加入350微升1 mM根皮素终止孵育,根皮素在约0.06秒内抑制转运。MeGlc摄取的时间进程与该过程是多相反应的观点一致。当MeGlc的细胞内分布空间约为总细胞体积的1%时,反应的初始阶段完成。在平衡交换实验中,胰岛素(10 nM)使MeGlc摄取的Vmax值增加了16倍,在零转运实验中增加了18倍。同时,在平衡交换实验中,该激素使MeGlc摄取的Km值从11.7 mM降至5.4 mM,在零转运实验中从9.7 mM降至4.8 mM。结论是胰岛素对MeGlc摄取的主要作用是增加Vmax值,但该激素还有降低表观Km值的额外作用。

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