Wohlhueter R M, Plagemann P G
Biochim Biophys Acta. 1982 Jul 28;689(2):249-60. doi: 10.1016/0005-2736(82)90257-7.
The transport of uridine and thymidine has been examined in HeLa cells, in Novikoff rat hepatoma cells and in human erythrocytes, with the purpose of comparing influx, efflux and isotopic exchange at chemical equilibrium. The results support the following conclusions: (i) In all three cell types influx and efflux are comparable; (ii) HeLa and Novikoff cells show no trans-effect, while erythrocytes show a 5-fold trans-stimulation; (iii) a single kinetic entity accounts for nucleoside transport in HeLa and Novikoff cells - no parallel routes of permeation with Km less than 40 microM were detected. For the cultured cells, the flux data conform to the kinetic model of a single, carrier-mediated transport system symmetrical with respect to direction, and with equal mobilities of substrate-loaded and empty carrier.
为了比较尿苷和胸苷在化学平衡状态下的流入、流出及同位素交换情况,研究人员对海拉细胞、诺维科夫大鼠肝癌细胞和人类红细胞中的这两种物质的转运进行了检测。结果支持以下结论:(i)在所有这三种细胞类型中,流入和流出情况相当;(ii)海拉细胞和诺维科夫细胞未表现出转效应,而红细胞表现出5倍的转刺激;(iii)一个单一的动力学实体负责海拉细胞和诺维科夫细胞中的核苷转运——未检测到Km小于40微摩尔的平行渗透途径。对于培养细胞,通量数据符合一个单一的、载体介导的转运系统的动力学模型,该模型在方向上是对称的,且底物负载载体和空载载体具有相同的迁移率。