Morariu V V, Pop V I, Popescu O, Benga G
J Membr Biol. 1981;62(1-2):1-5. doi: 10.1007/BF01870194.
The temperature and pH dependence of water exchange has been studied on isolated erythrocytes suspended in isotonic buffered solutions. At pH 7.4 a break in the Arrhenius plot of water exchange time at around 26 degrees C was found. The mean value of the apparent activation energy of the water exchange time at temperatures higher than that of the discontinuity was 5.7 kcal/mole (+/- 0.4); at lower temperatures the values of the apparent activation energy were below 1.4 kcal/mole. The pH dependence of water exchange time of isolated erythrocytes revealed a marked increase of the water exchange time values in the acid range of pH; a much smaller variation of the same parameter occurs between pH 7.0 and 8.0. These finding could be correlated with other processes involving erythrocyte membranes that showed similar pH and temperature dependence and were considered to indicate state transitions in the membranes. It is suggested that the temperature and pH effects on water diffusion indicate that conformational changes and cooperative effects are implicated in the mechanism of this transport process.
对悬浮于等渗缓冲溶液中的分离红细胞的水交换温度和pH依赖性进行了研究。在pH 7.4时,发现在约26℃的水交换时间的阿累尼乌斯图中有一个断点。在高于不连续温度的情况下,水交换时间的表观活化能的平均值为5.7千卡/摩尔(±0.4);在较低温度下,表观活化能的值低于1.4千卡/摩尔。分离红细胞的水交换时间的pH依赖性显示,在酸性pH范围内水交换时间值显著增加;在pH 7.0至8.0之间,该参数的变化要小得多。这些发现可能与涉及红细胞膜的其他过程相关,这些过程表现出相似的pH和温度依赖性,并被认为表明膜中的状态转变。有人提出,温度和pH对水扩散的影响表明,构象变化和协同效应与这种运输过程的机制有关。