Jacquemin E, Hagenbuch B, Stieger B, Wolkoff A W, Meier P J
Department of Medicine, University Hospital, Zurich/Switzerland.
J Clin Invest. 1991 Dec;88(6):2146-9. doi: 10.1172/JCI115546.
The expression of the basolateral chloride-activated organic anion uptake system of rat hepatocytes has been studied in Xenopus laevis oocytes. Injection of oocytes with rat liver poly(A)+RNA resulted in the functional expression of chloride-dependent sulfobromophthalein (BSP) uptake within 3-5 d. This expressed chloride-dependent BSP uptake system exhibited saturation kinetics (apparent Km approximately 6.2 microM) and efficiently extracted BSP from its binding sites on BSA. Furthermore, the chloride-activated portion of BSP uptake was inhibited by bilirubin (10 microM; inhibition 53%), 4,4'-diisothiocyano-2,2-disulfonic acid stilbene (DIDS, 100 microM; 80%), taurocholate (100 microM; 80%), and cholate (200 microM; 95%). In contrast to results with total rat liver mRNA, injection of mRNA derived from the Na+/bile acid cotransporter cDNA (Hagenbuch, B., B. Stieger, M. Foguet, H. Lübbert, and P. J. Meier. 1991. Proc. Natl. Acad. Sci. USA. In press.) had no effect on BSP uptake into oocytes. Size fractionation of total rat liver mRNA revealed that a 2.0- to 3.5-kb size-class mRNA was sufficient to express the hepatic chloride-dependent BSP uptake system. These data indicate that "expression cloning" in oocytes represents a promising approach to ultimately clone the cDNA coding for the hepatocyte high affinity, chloride-dependent organic anion uptake system. Furthermore, the results confirm that the Na+/bile acid cotransport system does not mediate BSP uptake.
已在非洲爪蟾卵母细胞中研究了大鼠肝细胞基底外侧氯化物激活的有机阴离子摄取系统的表达。向卵母细胞注射大鼠肝脏多聚腺苷酸加尾RNA(poly(A)+RNA),3 - 5天内导致了依赖氯化物的磺溴酞(BSP)摄取功能的表达。这种表达的依赖氯化物的BSP摄取系统表现出饱和动力学(表观Km约为6.2微摩尔),并能有效地从其在牛血清白蛋白(BSA)上的结合位点提取BSP。此外,BSP摄取的氯化物激活部分受到胆红素(10微摩尔;抑制率53%)、4,4'-二异硫氰基-2,2-二磺酸芪(DIDS,100微摩尔;80%)、牛磺胆酸盐(100微摩尔;80%)和胆酸盐(200微摩尔;95%)的抑制。与用大鼠肝脏总mRNA的结果相反,注射源自钠/胆汁酸共转运体cDNA(哈根布赫,B.,B. 施蒂格,M. 福盖特,H. 吕伯特,和P. J. 迈尔。1991. 美国国家科学院院刊。即将发表。)的mRNA对卵母细胞摄取BSP没有影响。对大鼠肝脏总mRNA进行大小分级分离显示,2.0至3.5千碱基大小类别的mRNA足以表达肝脏依赖氯化物的BSP摄取系统。这些数据表明,卵母细胞中的“表达克隆”是最终克隆编码肝细胞高亲和力、依赖氯化物的有机阴离子摄取系统的cDNA的一种有前景的方法。此外,结果证实钠/胆汁酸共转运系统不介导BSP摄取。