Plagemann P G, Wohlhueter R M
J Biol Chem. 1984 Jul 25;259(14):9024-7.
The transmembrane equilibration of [3H]uridine was measured in human erythrocytes as a function of temperature using rapid kinetic techniques. Arrhenius plots of the maximum velocity of equilibrium exchange were continuous between 5 and 30 degrees C (Ea = 17-20 kcal/mol), but the increase in velocity with increase in temperature leveled off above 30 degrees C. This leveling off did not reflect heat inactivation of the carrier since transport activity was stable for 3 h at 37 degrees C. Transmembrane equilibration of uridine in equilibrium exchange and zero-trans modes at 5, 15, 25, and 35 degrees C conformed to appropriate integrated rate equations derived for the simple transporter. The nucleoside transporter exhibited directional symmetry, but the loaded carrier moved on the average 5 times more rapidly than the empty carrier at 15, 25, and 35 degrees C, but 25-40 times faster at 5 degrees C. This marked shift in differential mobility of loaded and empty carrier between 15 and 5 degrees C was entirely attributable to an impairment of mobility of empty carrier. The Michaelis-Menten constant for equilibrium exchange increased about 3-fold with increase in temperature between 5 and 35 degrees C. The van't Hoff plot of the values was approximately linear and yielded an estimate of the enthalpy of carrier:substrate dissociation of 7.8 kcal/mol.
利用快速动力学技术,在人红细胞中测定了[3H]尿苷的跨膜平衡作为温度的函数。平衡交换最大速度的阿累尼乌斯图在5至30摄氏度之间是连续的(活化能=17-20千卡/摩尔),但随着温度升高速度的增加在30摄氏度以上趋于平稳。这种平稳并非反映载体的热失活,因为运输活性在37摄氏度下3小时内保持稳定。在5、15、25和35摄氏度下,尿苷在平衡交换和零转运模式下的跨膜平衡符合为简单转运体推导的适当积分速率方程。核苷转运体表现出方向对称性,但在15、25和35摄氏度下,负载载体移动的平均速度比空载载体快5倍,而在5摄氏度下快25-40倍。负载和空载载体在15摄氏度和5摄氏度之间的差异迁移率的这种显著变化完全归因于空载载体迁移率的受损。平衡交换的米氏常数在5至35摄氏度之间随温度升高增加约3倍。这些值的范特霍夫图近似线性,得出载体:底物解离焓的估计值为7.8千卡/摩尔。