Täfler M, Ziegler K, Frimmer M
Institut für Pharmakologie und Toxikologie im Fachbereich Veterinärmedizin, Justus-Liebig-Universität Giessen, Federal Republic of Germany.
Naunyn Schmiedebergs Arch Pharmacol. 1988 Feb;337(2):231-7. doi: 10.1007/BF00169253.
The mechanism and driving forces for hepatocellular phallotoxin uptake were studied by a rapid-filtration technique using basolateral liver plasma membrane vesicles (blLPM). An inwardly directed Na+ gradient but not K+-gradient transiently stimulated taurocholate uptake into blLPM 1.4-1.7-fold above the equilibrium value (overshoot), demonstrating functionally intact vesicles. In contrast, overshooting phallotoxin uptake (1.15-1.2-fold intravesicular accumulation above equilibrium value) was observed in the presence of a K+ as well as of a Na+ gradient. Na+ could be replaced by K+ or Li+. In the presence of choline a distinct uptake reduction of 57% was seen. Counter-transport phenomena suggest phallotoxin transport rather than binding. Phallotoxin uptake was inhibited significantly by taurocholate, iodipamide and antamanide, but only slightly by alpha-amanitin. Creation of a negative intravesicular potential by altered accompanying anions or by valinomycin-induced K+ diffusion potential enhanced the initial uptake rate for phallotoxin, demonstrating rheogenic solute uptake. These findings provide evidence that hepatocellular uptake of phallotoxin is due to carrier-mediated transport. Hepatic uptake of phallotoxin is assumed to be driven by both a monovalent cation gradient (Na+ or K+) and a transmembranal potential difference.
采用快速过滤技术,利用肝基底外侧质膜囊泡(blLPM)研究了肝细胞摄取鬼笔环肽的机制和驱动力。内向的Na⁺梯度而非K⁺梯度能短暂刺激牛磺胆酸盐摄取进入blLPM,使其摄取量比平衡值高出1.4 - 1.7倍(超射),表明囊泡功能完整。相比之下,在存在K⁺以及Na⁺梯度的情况下,观察到鬼笔环肽摄取超射(囊泡内积累比平衡值高出1.15 - 1.2倍)。Na⁺可用K⁺或Li⁺替代。在存在胆碱的情况下,摄取量明显降低了57%。反向转运现象表明是鬼笔环肽转运而非结合。牛磺胆酸盐、碘番酸和鹅膏蕈氨酸能显著抑制鬼笔环肽摄取,但α - 鹅膏毒肽的抑制作用较弱。通过改变伴随阴离子或缬氨霉素诱导的K⁺扩散电位产生囊泡内负电位,可提高鬼笔环肽的初始摄取速率,表明是生电溶质摄取。这些发现提供了证据,证明肝细胞摄取鬼笔环肽是由载体介导的转运所致。假定肝摄取鬼笔环肽是由单价阳离子梯度(Na⁺或K⁺)和跨膜电位差驱动的。