Kusuhara H, Han Y H, Shimoda M, Kokue E, Suzuki H, Sugiyama Y
Graduate School of Pharmaceutical Sciences, University of Tokyo, Bunkyo-ku, Tokyo 113, Japan.
Am J Physiol. 1998 Oct;275(4):G789-96. doi: 10.1152/ajpgi.1998.275.4.G789.
We examined the role of the canalicular multispecific organic anion transporter (cMOAT) in the biliary excretion of reduced folate derivatives in vivo and in vitro using normal [Sprague-Dawley rats (SDR)] and mutant [Eisai hyperbilirubinemic rats (EHBR)] rats whose cMOAT is hereditarily deficient. In vivo, the biliary excretion of endogenous tetrahydrofolate (H4PteGlu), 5-methyltetrahydrofolate (5-CH3-H4PteGlu), and 5,10-methylenetetrahydrofolate (5, 10-CH2-H4PteGlu) in EHBR was reduced to 8.2%, 1.9%, and 5.5% of those in SDR, respectively, whereas that of 10-formyltetrahydrofolate (10-HCO-H4PteGlu) was detected only in SDR and not in EHBR. Bile drainage caused reduction of endogenous plasma folate concentrations in SDR but not in EHBR. In vitro, significant ATP-dependent uptake of 3H-labeled 5-CH3-H4PteGlu into canalicular membrane vesicles was observed only in SDR. This ATP-dependent uptake was saturable with a Michaelis constant (Km) value of 126 microM, which was comparable with its inhibitor constant (Ki) value of 121 microM for the ATP-dependent uptake of a typical cMOAT substrate, 2,4-dinitrophenyl-S-glutathione (DNP-SG). Vice versa, DNP-SG inhibited the uptake of 5-CH3-H4PteGlu with a Ki of 35 microM, which was similar to its Km value. In addition, H4PteGlu and 5, 10-CH2-H4PteGlu also inhibited the ATP-dependent uptake of DNP-SG. These results indicate that 5-CH3-H4PteGlu and other derivatives are transported via cMOAT. Therefore, reduced folate derivatives are the first endogenous substrates for cMOAT that do not contain glutathione, glucuronide, or sulfate moieties.
我们使用正常的[Sprague-Dawley大鼠(SDR)]和cMOAT遗传性缺陷的突变[Eisai高胆红素血症大鼠(EHBR)],在体内和体外研究了胆小管多特异性有机阴离子转运体(cMOAT)在还原型叶酸衍生物胆汁排泄中的作用。在体内,EHBR中内源性四氢叶酸(H4PteGlu)、5-甲基四氢叶酸(5-CH3-H4PteGlu)和5,10-亚甲基四氢叶酸(5,10-CH2-H4PteGlu)的胆汁排泄分别降至SDR中的8.2%、1.9%和5.5%,而10-甲酰四氢叶酸(10-HCO-H4PteGlu)仅在SDR中检测到,在EHBR中未检测到。胆汁引流导致SDR中内源性血浆叶酸浓度降低,但EHBR中未降低。在体外,仅在SDR中观察到3H标记的5-CH3-H4PteGlu向胆小管膜囊泡的显著ATP依赖性摄取。这种ATP依赖性摄取是可饱和的,米氏常数(Km)值为126μM,这与其对典型cMOAT底物2,4-二硝基苯基-S-谷胱甘肽(DNP-SG)的ATP依赖性摄取的抑制常数(Ki)值121μM相当。反之,DNP-SG以35μM的Ki抑制5-CH3-H4PteGlu的摄取,这与其Km值相似。此外,H4PteGlu和5,10-CH2-H4PteGlu也抑制DNP-SG的ATP依赖性摄取。这些结果表明5-CH3-H4PteGlu和其他衍生物通过cMOAT转运。因此,还原型叶酸衍生物是cMOAT的首批不含有谷胱甘肽、葡糖醛酸或硫酸盐部分的内源性底物。