Hay R J, Paul J
J Gen Physiol. 1967 Jul;50(6):1663-80. doi: 10.1085/jgp.50.6.1663.
Uptake of glucose-(3)H into cultured HLM cells was measured. Equilibration of intracellular and extracellular pools occurred after 25 min. Glucose influx was determined subsequently by measuring the glucose-(3)H entering in precisely 1 min. Although saturation kinetics were demonstrated these were not of the simple Michaelis-Menten type. The K(m) of the glucose carrier system is probably about 60 mM glucose. Galactose did not compete with glucose. Insulin stimulated glucose flux without increasing the value of V(max). The stimulation was fully demonstrable after 10 min, could be elicited at concentrations of 10(-4) units/ml, and was absent 2-4 hr after removal. Increasing pH had little or no effect in stimulating glucose flux. Increasing osmotic pressure caused a marked increase and reduced the effect of insulin. Glucose influx was unaffected by anoxia. Glucose influx was increased and the effect of insulin abolished in the absence of K(+). Glucose influx was increased by mercuric chloride, iodoacetate, and fluoride which abolished the effect of insulin. Dinitrophenol decreased the rate of glucose uptake but did not alter the effect of insulin. Phlorizin reduced the rate of glucose uptake and abolished the effect of insulin. ATP and AMP enhanced the rate of glucose uptake. These findings are discussed in relation to the mode of action of insulin.
测定了(³H)-葡萄糖进入培养的人肝微粒体(HLM)细胞的摄取情况。25分钟后细胞内和细胞外池达到平衡。随后通过精确测量1分钟内进入的(³H)-葡萄糖来确定葡萄糖的流入量。尽管表现出饱和动力学,但并非简单的米氏(Michaelis-Menten)类型。葡萄糖载体系统的米氏常数(K(m))可能约为60 mM葡萄糖。半乳糖不与葡萄糖竞争。胰岛素刺激葡萄糖通量但不增加最大反应速度(V(max))的值。刺激在10分钟后完全显现,在浓度为10⁻⁴单位/毫升时即可引发,去除后2 - 4小时消失。提高pH对刺激葡萄糖通量几乎没有影响。增加渗透压导致显著增加并降低了胰岛素的作用。缺氧不影响葡萄糖的流入。在无钾(K⁺)的情况下,葡萄糖流入增加且胰岛素的作用消失。氯化汞、碘乙酸盐和氟化物增加了葡萄糖的流入,同时消除了胰岛素的作用。二硝基酚降低了葡萄糖摄取速率,但未改变胰岛素的作用。根皮苷降低了葡萄糖摄取速率并消除了胰岛素的作用。三磷酸腺苷(ATP)和一磷酸腺苷(AMP)提高了葡萄糖摄取速率。结合胰岛素的作用方式对这些发现进行了讨论。