Lowe A G, Walmsley A R
Biochim Biophys Acta. 1986 May 28;857(2):146-54. doi: 10.1016/0005-2736(86)90342-1.
A quenched-flow apparatus and a newly developed automated syringe system have been used to measure initial rates of D-[14C]glucose transport into human red blood cells at temperatures ranging from 0 degrees to 53 degrees C. The Haldane relationship is found to be obeyed satisfactorily at both 0 and 20 degrees C, but Arrhenius plots of maximum D-[14C]glucose transport rates are non-linear under conditions of both equilibrium exchange and zero trans influx. Fitting of the data by non-linear regression to the conventional model for glucose transport gives values at 0 degrees C of 0.726 +/- 0.0498 s-1 and 12.1 +/- 0.98 s-1 for the rate constants governing outward and inward movements of the unloaded carrier molecule and 90.3 +/- 3.47 s-1 and 1113 +/- 494 s-1 for outward and inward movements of the carrier-glucose complex. Activation energies for these four rate constants are respectively 173 +/- 3.10, 127 +/- 4.78, 88.0 +/- 6.17 and 31.7 +/- 5.11 kJ X mol-1. These parameters indicate that at low temperatures the marked asymmetry of the transport mechanism arises mainly from the high proportion of inward-facing carriers and carrier-glucose complexes, and that there is a relatively small difference between the affinities of the carrier for glucose in the inward and outward-facing conformations. At high (physiological) temperatures the carrier is fairly evenly distributed between outward- and inward-facing conformations and the affinity for glucose is about 2.5-times greater outside than inside.
使用淬灭流动装置和新开发的自动注射器系统,在0摄氏度至53摄氏度的温度范围内测量D-[14C]葡萄糖转运到人类红细胞中的初始速率。发现在0摄氏度和20摄氏度时,哈代关系均得到令人满意的遵循,但在平衡交换和零转运流入条件下,最大D-[14C]葡萄糖转运速率的阿累尼乌斯图均呈非线性。通过非线性回归将数据拟合到传统的葡萄糖转运模型,得到在0摄氏度时,空载载体分子向外和向内移动的速率常数分别为0.726±0.0498 s-1和12.1±0.98 s-1,载体-葡萄糖复合物向外和向内移动的速率常数分别为90.3±3.47 s-1和1113±494 s-1。这四个速率常数的活化能分别为173±3.10、127±4.78、88.0±6.17和31.7±5.11 kJ·mol-1。这些参数表明,在低温下,转运机制的显著不对称主要源于向内的载体和载体-葡萄糖复合物的高比例,并且载体在向内和向外构象中对葡萄糖的亲和力差异相对较小。在高(生理)温度下,载体在向外和向内构象之间分布相当均匀,对葡萄糖的亲和力在外部约为内部的2.5倍。