Characterization of guanidine transport in human renal brush border membranes

被引:21
作者
Chun, JK
Zhang, L
PiquetteMiller, M
Lau, E
Tong, LQ
Giacomini, KM
机构
[1] UNIV CALIF SAN FRANCISCO,DEPT BIOPHARMACEUT SCI,SAN FRANCISCO,CA 94143
[2] UNIV TORONTO,FAC PHARM,TORONTO,ON M5S 2S2,CANADA
关键词
brush-border membrane vesicles; organic cation transport; tetraethylammonium; guanidine; human kidney; transporters;
D O I
10.1023/A:1012164203648
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Purpose. Organic cation transporters in the renal proximal tubule are important in the secretion of many clinically used drugs and their metabolites. The goal of this study was to determine the mechanisms of guanidine transport in human kidney. Methods, Brush-border membrane vesicles were prepared from donor human kidneys deemed unsuitable for renal transplantation. Results. Uptake of [C-14]-guanidine (50 mu M) in the vesicles, as determined by rapid filtration, was significantly greater in the presence of an outwardly-directed proton gradient, at ail early time points, than in the absence of the gradient. Proton-stimulated uptake of [ C-14]-guanidine at 30 sec (32.0 +/- 1.24 pmol/mg protein) was significantly inhibited by a number of organic cations including 5 mM unlabeled guanidine (14.8 +/- 1.84 pmol/mg protein) and 5 mM MIBA (9.14 +/- 3.80 pmol/mg protein), but not by 5 mM TEA (28.4 +/- 5.67 pmol/mg protein). Guanidine, but not TEA, trans-stimulated [C-14]-guanidine uptake. Conversely, TEA, but not guanidine, trans-stimulated [C-14]-TEA uptake in the vesicles. The proton-dependent transport of guanidine was characterized by a K-m of 3.52 +/- 0.42 mM (SE) and a V-max of 34.6 +/- 8.64 pmol/mg protein/sec (SE). Conclusions. These results demonstrate that guanidine transport in human renal brush border membrane vesicles is stimulated by a proton gradient. Evidence was obtained suggesting that the transporter for guanidine is distinct from the previously described organic cation proton antiporter for TEA.
引用
收藏
页码:936 / 941
页数:6
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