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人P-糖蛋白转运环孢菌素A和FK506。

Human P-glycoprotein transports cyclosporin A and FK506.

作者信息

Saeki T, Ueda K, Tanigawara Y, Hori R, Komano T

机构信息

Department of Agricultural Chemistry, Faculty of Agriculture, Kyoto University Hospital, Japan.

出版信息

J Biol Chem. 1993 Mar 25;268(9):6077-80.

PMID:7681059
Abstract

Cyclosporin A, a cyclic undecapeptide, and FK506 are efficient immunosuppressive agents. They also attract attention as effective P-glycoprotein modulators that inhibit P-glycoprotein from binding to anticancer drugs and overcome multidrug resistance. Cyclosporin A itself interacts with a common binding site of P-glycoprotein to which Vinca alkaloids and verapamil bind. We were interested to determine whether cyclosporin A and FK506 are substrates for P-glycoprotein to transport, and we studied their transcellular transport. In LLC-PK1 cells, derived from porcine kidney proximal tubule and forming a highly polarized epithelium, cyclosporin A was transported in a saturable manner. LLC-GA5-COL300, a transformant cell line derived by transfecting LLC-PK1 with human MDR1 cDNA isolated from normal adrenal gland, expresses P-glycoprotein specifically on the apical surface and shows a typical multidrug-resistant phenotype. LLC-GA5-COL300 cells showed increased transport of cyclosporin A from the basal to the apical side. Kinetic analysis showed that this transport was a typical saturable transport with the calculated apparent Michaelis constant (Kappm) and the maximum flux (Vmax) as 8.4 microM and 2.4 nmol/mg protein/h, respectively. LLC-GA5-COL300 also showed increased transport of FK506 from the basal to the apical side. These results indicate that P-glycoprotein transports the immunosuppressive agents cyclosporin A and FK506.

摘要

环孢素A是一种环状十一肽,与FK506一样,都是有效的免疫抑制剂。它们作为有效的P-糖蛋白调节剂也备受关注,能够抑制P-糖蛋白与抗癌药物结合,从而克服多药耐药性。环孢素A自身可与长春花生物碱和维拉帕米结合的P-糖蛋白共同结合位点相互作用。我们很想确定环孢素A和FK506是否为P-糖蛋白转运的底物,因此研究了它们的跨细胞转运。在源自猪肾近端小管并形成高度极化上皮的LLC-PK1细胞中,环孢素A以可饱和的方式进行转运。LLC-GA5-COL300是通过用从正常肾上腺分离的人MDR1 cDNA转染LLC-PK1而获得的转化细胞系,在其顶端表面特异性表达P-糖蛋白,并呈现典型的多药耐药表型。LLC-GA5-COL300细胞中环孢素A从基底侧向顶端侧的转运增加。动力学分析表明,这种转运是典型的可饱和转运,计算得出的表观米氏常数(Kappm)和最大通量(Vmax)分别为8.4 microM和2.4 nmol/mg蛋白/小时。LLC-GA5-COL300中FK506从基底侧向顶端侧的转运也增加。这些结果表明,P-糖蛋白可转运免疫抑制剂环孢素A和FK506。

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