Khan N A, Quemener V, Seiler N, Moulinoux J P
Department of Cell Biology, Faculty of Medicine, Central Hospital of the University of Rennes-I, France.
Pathobiology. 1990;58(3):172-8. doi: 10.1159/000163579.
Transport pathways for spermidine (Spd) were characterized in mammalian cells in culture of different origin, i.e. L 1210, P 388, C 6, U 251, Balb/c 3T3 normal and transformed by virus SV40 (SV40/3T3). The kinetic constants (Km and Vmax) for 14C-Spd uptake were found to be different in these cells. Spd uptake was inhibited by spermine and putrescine in all cells. Preloading of these cells with system A and other amino acids, including ornithine, usually did not affect Spd uptake, except in L 1210 and C 6 cells, where Spd uptake was accelerated by 2-aminoisobutyric acid, demonstrating that in these two cell lines the polyamines share the system A pathway. Iso-osmotic replacement of Na+ by choline chloride in the assay medium resulted in a decrease in Spd uptake which suggests that Spd uptake is Na+ activated. In all cells, Spd uptake was inhibited by gramicidin and the Ca2+ ionophore A 23187. The degree of inhibition varied among the cells. Valinomycin (K+ ionophore) inhibited Spd uptake by C 6, P 388, Balb/c 3T3 and SV40/3T3 but not by L 1210 and U 251 cells. Treatment with N-ethylmaleimide or p-L 1210, C 6, Balb/c 3T3 and SV40/3T3 cells did not affect appreciably the uptake process. Some newly synthesized polyamine analogues inhibited the Spd uptake of all cells.
在不同来源的哺乳动物培养细胞中,即L 1210、P 388、C 6、U 251、Balb/c 3T3正常细胞以及经病毒SV40转化的细胞(SV40/3T3)中,对亚精胺(Spd)的转运途径进行了表征。发现这些细胞中14C-Spd摄取的动力学常数(Km和Vmax)有所不同。在所有细胞中,精胺和腐胺均抑制Spd摄取。用系统A和其他氨基酸(包括鸟氨酸)对这些细胞进行预加载,通常不会影响Spd摄取,但在L 1210和C 6细胞中除外,在这两种细胞中,2-氨基异丁酸可加速Spd摄取,这表明在这两种细胞系中多胺共享系统A途径。在测定培养基中用氯化胆碱等渗替代Na+会导致Spd摄取减少,这表明Spd摄取是由Na+激活的。在所有细胞中,短杆菌肽和Ca2+离子载体A 23187均抑制Spd摄取。抑制程度在不同细胞中有所差异。缬氨霉素(K+离子载体)抑制C 6、P 388、Balb/c 3T3和SV40/3T3细胞的Spd摄取,但不抑制L 1210和U 251细胞。用N-乙基马来酰亚胺或对- L 1210、C 6、Balb/c 3T3和SV40/3T3细胞进行处理,对摄取过程没有明显影响。一些新合成的多胺类似物抑制所有细胞的Spd摄取。