Department of Pharmacology and Therapeutics, Faculty of Medicine, P-4200, Porto, Portugal.
Amino Acids. 1995 Sep;8(3):265-70. doi: 10.1007/BF00806823.
The present study was performed with the aim to determine the kinetics and the caracteristics of cellular uptake of L-3,4-dihydroxyphenylalanine (L-DOPA) in rat renal proximal tubules. Incubation of renal tubules at 4°C in the presence of increasing concentrations of L-DOPA results in a linear and concentration-dependent accumulation of the substrate. In experiments carried out at 37°C, the accumulation of L-DOPA in renal tubules was found to be greater than that occurring at 4°C and showed a trend for saturation. The saturable component of L-DOPA uptake was derived from the total amount of L-DOPA accumulated in renal tubules at 37°C subtracted with the values obtained in experiments conducted at 4°C. The Vmax and Km values for the saturable component of L-DOPA uptake in renal tubules were, respectively, 241 ± 32 fmol µg protein(-1)min(-1) and 567 ± 63 µM. Cyanine 863 (5 and 10 µM) was found to decrease the tubular uptake of L-DOPA, whereas probenecid (50 µM) did not change the rate of uptake of L-DOPA into renal tubules. The Vmax and Km values for the saturable component of L-DOPA uptake in renal tubules incubated in the presence of 10 µM cyanine 863 were, respectively, 97 ± 11 fmol µg protein(-1)min(-1) and 160 ± 22 µM. It is suggested that the anionic L-DOPA may behave as an amphoteric substance, both hydroxyl groups in the aromatic ring determining the binding of the molecule to the organic cation transporter.
本研究旨在确定 L-3,4-二羟基苯丙氨酸(L-DOPA)在大鼠肾近端小管中的细胞摄取动力学和特征。在 4°C 下孵育肾小管,在存在增加浓度的 L-DOPA 的情况下,底物的积累呈线性和浓度依赖性。在 37°C 下进行的实验中,发现 L-DOPA 在肾小管中的积累大于在 4°C 下的积累,并且显示出饱和的趋势。L-DOPA 摄取的可饱和部分是从 37°C 下肾小管中积累的 L-DOPA 的总量减去在 4°C 下进行的实验中获得的值得出的。肾小管中 L-DOPA 摄取的可饱和部分的 Vmax 和 Km 值分别为 241±32 fmolµg 蛋白(-1)min(-1)和 567±63µM。发现 Cyanine 863(5 和 10µM)降低了 L-DOPA 的管状摄取,而丙磺舒(50µM)并没有改变 L-DOPA 进入肾小管的摄取速率。在存在 10µM Cyanine 863 的情况下孵育的肾小管中 L-DOPA 摄取的可饱和部分的 Vmax 和 Km 值分别为 97±11 fmolµg 蛋白(-1)min(-1)和 160±22µM。阴离子 L-DOPA 可能表现为两性物质,芳香环中的两个羟基决定了分子与有机阳离子转运体的结合。