Yamauchi A, Kwon H M, Uchida S, Preston A S, Handler J S
Department of Medicine, Johns Hopkins University School of Medicine, Baltimore, Maryland 21205.
Am J Physiol. 1991 Jul;261(1 Pt 2):F197-202. doi: 10.1152/ajprenal.1991.261.1.F197.
Myo-inositol and glycinebetaine are compatible osmolytes accumulated in the renal medulla and in MDCK cells cultured in hypertonic media. Both osmolytes are taken up by MDCK cells on Na-coupled transporters. The maximal velocity (Vmax) of both cotransporters is increased by culture in hypertonic medium. When hypertonic MDCK cells are shifted to isotonic medium there is a large transient efflux of osmolytes. To determine the polarity of the cotransporters and the transient efflux, we grew MDCK cells on a porous support to assay transport separately at their apical and basolateral surfaces. In hypertonic cells, basolateral uptake of both osmolytes was 1) more than 10-fold apical uptake, 2) greater than 96% Na dependent, 3) 25- (myo-inositol) and 16-fold (glycinebetaine) uptake in isotonic cells, reaching a maximum 24 h after the switch to hypertonic medium. When medium osmolarity was decreased from hypertonic to isotonic, myo-inositol uptake reversed to the isotonic level within 1 day; glycinebetaine uptake decreased more slowly. When medium osmolarity was decreased from hypertonic to isotonic, there was a large transient increase in basolateral efflux of both osmolytes.
肌醇和甘氨酸甜菜碱是在肾髓质以及在高渗培养基中培养的MDCK细胞中积累的相容性渗透溶质。这两种渗透溶质通过与钠偶联的转运体被MDCK细胞摄取。两种共转运体的最大速度(Vmax)在高渗培养基中培养时会增加。当高渗MDCK细胞转移到等渗培养基中时,会有大量的渗透溶质瞬时外流。为了确定共转运体的极性和瞬时外流,我们将MDCK细胞培养在多孔支持物上,以分别在其顶端和基底外侧表面检测转运。在高渗细胞中,两种渗透溶质的基底外侧摄取量:1)比顶端摄取量高10倍以上;2)超过96%依赖于钠;3)是等渗细胞中摄取量的25倍(肌醇)和16倍(甘氨酸甜菜碱),在切换到高渗培养基后24小时达到最大值。当培养基渗透压从高渗降低到等渗时,肌醇摄取在1天内恢复到等渗水平;甘氨酸甜菜碱摄取下降得更慢。当培养基渗透压从高渗降低到等渗时,两种渗透溶质的基底外侧外流都有大量瞬时增加。