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牛小肠刷状缘小泡中D-葡萄糖钠共转运的动力学

Kinetics of sodium D-glucose cotransport in bovine intestinal brush border vesicles.

作者信息

Kaunitz J D, Wright E M

出版信息

J Membr Biol. 1984;79(1):41-51. doi: 10.1007/BF01868525.

Abstract

Brush border membrane vesicles ( BBMV ) purified from steer jejunum were used to study the kinetics of sodium D-glucose cotransport under voltage clamped, zero-trans conditions. When the initial rate of glucose transport ( Jgluc ) was measured over a wide range of glucose concentrations ([S] = 0.01-20 mM), curvature of the Woolf - Augustinsson -Hofstee plots was seen, compatible with a diffusional and one major, high capacity (maximal transport rate Jmax = 5.8-8.8 nmol/mg X min) saturable system. Further studies indicated that changes in cis [Na] altered the Kt, but not the Jmax, suggesting the presence of a rapid-equilibrium, ordered bireactant system with sodium adding first. Trans sodium inhibited Jgluc hyperbolically, KCl-valinomycin diffusion potentials, inner membrane face positive, lowered Jgluc , while potentials of the opposite polarity raise Jgluc . At low glucose concentrations ([S] less than 0.05 mM), a second, minor, high affinity transport system was indicated. Further evidence for this second saturable system was provided by sodium activation curves, which were hyperbolic when [S] = 0.5 mM, but were sigmoidal when [S] = 0.01 mM. Simultaneous fluxes of 22Na and [3H]glucose at 1 mM glucose and 30 mM NaCl yielded a cotransport-dependent flux ratio of 2:1 sodium/glucose, suggestive of 1:1 (Na/glucose) high capacity, low affinity system and a approximately 3:1 (Na/glucose) high affinity, low capacity system. Kinetic experiments with rabbit jejunal brush borders revealed two major Na-dependent saturable systems. Extravesicular (cis) Na changed the Kt, but not the Jmax of the major system.

摘要

从牛空肠纯化的刷状缘膜囊泡(BBMV)用于研究在电压钳制、零转运条件下D-葡萄糖钠共转运的动力学。当在广泛的葡萄糖浓度范围内([S]=0.01 - 20 mM)测量葡萄糖转运的初始速率(Jgluc)时,观察到伍尔夫-奥古斯汀松-霍夫斯泰曲线的曲率,这与一个扩散性的和一个主要的、高容量(最大转运速率Jmax = 5.8 - 8.8 nmol/mg X min)的可饱和系统相符。进一步的研究表明,顺式[Na]的变化改变了Kt,但没有改变Jmax,这表明存在一个快速平衡的、有序的双反应物系统,钠先结合。反式钠以双曲线形式抑制Jgluc,KCl-缬氨霉素扩散电位(内膜面为正)降低Jgluc,而相反极性的电位则提高Jgluc。在低葡萄糖浓度([S]小于0.05 mM)时,表明存在第二个次要的高亲和力转运系统。钠激活曲线为该第二个可饱和系统提供了进一步的证据,当[S]=0.5 mM时曲线是双曲线形的,但当[S]=0.01 mM时是S形的。在1 mM葡萄糖和30 mM NaCl条件下同时进行22Na和[3H]葡萄糖的通量测定,得出共转运依赖的通量比为钠/葡萄糖2:1,提示存在一个1:1(钠/葡萄糖)的高容量、低亲和力系统和一个约3:1(钠/葡萄糖)的高亲和力、低容量系统。用兔空肠刷状缘进行的动力学实验揭示了两个主要的钠依赖可饱和系统。囊泡外(顺式)钠改变了主要系统的Kt,但没有改变Jmax。

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